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osphomannomutase/</loc><lastmod>2026-05-21T16:32:58+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/reconstitution-of-sec-gene-product-dependent-intercompartmental-protein-transport/</loc><lastmod>2026-05-21T16:33:27+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec7-encodes-an-unusual-high-molecular-weight-protein-required-for-membrane-traffic-from-the-yeast-golgi-apparatus/</loc><lastmod>2026-05-21T16:34:28+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/a-membrane-glycoprotein-sec12p-required-for-protein-transport-from-the-endoplasmic-reticulum-to-the-golgi-apparatus-in-yeast/</loc><lastmod>2026-05-21T16:34:55+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-role-of-stress-proteins-in-membrane-biogenesis/</loc><lastmod>2026-05-21T16:35:33+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/reconstitution-of-protein-transport-using-broken-yeast-spheroplasts/</loc><lastmod>2026-05-21T16:36:40+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/a-hitchhikers-guide-to-analysis-of-the-secretory-pathway-in-yeast/</loc><lastmod>2026-05-21T16:37:16+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec59-encodes-a-membrane-protein-required-for-core-glycosylation-in-saccharomyces-cerevisiae/</loc><lastmod>2026-05-21T16:37:45+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/yeast-sec23p-acts-in-the-cytoplasm-to-promote-protein-transport-from-the-endoplasmic-reticulum-to-the-golgi-complex-in-vivo-and-in-vitro/</loc><lastmod>2026-05-21T16:38:30+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/functional-compartments-of-the-yeast-golgi-apparatus-are-defined-by-the-sec7-mutation/</loc><lastmod>2026-05-21T16:39:50+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/clathrin-a-role-in-the-intracellular-retention-of-a-golgi-membrane-protein/</loc><lastmod>2026-05-21T16:40:20+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/multiple-genes-are-required-for-proper-insertion-of-secretory-proteins-into-the-endoplasmic-reticulum-in-yeast/</loc><lastmod>2026-05-21T16:40:48+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/gtp-binding-ypt1-protein-and-ca2-function-independently-in-a-cell-free-protein-transport-reaction/</loc><lastmod>2026-05-21T16:42:36+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/genetic-and-biochemical-evaluation-of-eucaryotic-membrane-protein-topology-multiple-transmembrane-domains-of-saccharomyces-cerevisiae-3-hydroxy-3-methylglutaryl-coenzyme-a-reductase/</loc><lastmod>2026-05-21T16:43:02+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/distinct-sets-of-sec-genes-govern-transport-vesicle-formation-and-fusion-early-in-the-secretory-pathway/</loc><lastmod>2026-05-21T16:43:34+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/molecular-machinery-required-for-protein-transport-from-the-endoplasmic-reticulum-to-the-golgi-complex/</loc><lastmod>2026-05-21T16:44:10+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/yeast-clathrin-has-a-distinctive-light-chain-that-is-important-for-cell-growth/</loc><lastmod>2026-05-21T16:44:39+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec62-encodes-a-putative-membrane-protein-required-for-protein-translocation-into-the-yeast-endoplasmic-reticulum/</loc><lastmod>2026-05-21T16:41:46+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/structural-and-functional-dissection-of-sec62p-a-membrane-bound-component-of-the-yeast-endoplasmic-reticulum-protein-import-machinery/</loc><lastmod>2026-05-21T16:45:29+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/localization-of-components-involved-in-protein-transport-and-processing-through-the-yeast-golgi-apparatus/</loc><lastmod>2026-05-21T16:46:47+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/analysis-of-polypeptide-transit-through-yeast-secretory-pathway/</loc><lastmod>2026-05-21T16:46:37+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/assembly-of-yeast-sec-proteins-involved-in-translocation-into-the-endoplasmic-reticulum-into-a-membrane-bound-multisubunit-complex/</loc><lastmod>2026-05-21T16:47:26+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/regulated-import-and-degradation-of-a-cytosolic-protein-in-the-yeast-vacuole/</loc><lastmod>2026-05-21T16:47:58+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/distinct-biochemical-requirements-for-the-budding-targeting-and-fusion-of-er-derived-transport-vesicles/</loc><lastmod>2026-05-21T16:48:41+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec12p-dependent-membrane-binding-of-the-small-gtp-binding-protein-sar1p-promotes-formation-of-transport-vesicles-from-the-er/</loc><lastmod>2026-05-21T16:49:09+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/mammalian-sec23p-homologue-is-restricted-to-the-endoplasmic-reticulum-transitional-cytoplasm/</loc><lastmod>2026-05-21T16:50:13+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/structural-and-functional-dissection-of-a-membrane-glycoprotein-required-for-vesicle-budding-from-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T16:50:57+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/reconstitution-of-transport-from-endoplasmic-reticulum-to-golgi-complex-using-endoplasmic-reticulum-enriched-membrane-fraction-from-yeast/</loc><lastmod>2026-05-21T16:51:36+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/use-of-sec-mutants-to-define-intermediates-in-protein-transport-from-endoplasmic-reticulum/</loc><lastmod>2026-05-21T16:52:13+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/purification-of-yeast-sec23-protein-by-complementation-of-mutant-cell-lysates-deficient-in-endoplasmic-reticulum-to-golgi-transport/</loc><lastmod>2026-05-21T16:52:51+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/vesicle-mediated-protein-sorting/</loc><lastmod>2026-05-21T16:53:34+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/protein-translocation-mutants-defective-in-the-insertion-of-integral-membrane-proteins-into-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T16:54:00+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/genes-and-proteins-required-for-vesicular-transport-from-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T16:55:21+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec61p-and-bip-directly-facilitate-polypeptide-translocation-into-the-er/</loc><lastmod>2026-05-21T16:56:21+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec23p-and-a-novel-105-kda-protein-function-as-a-multimeric-complex-to-promote-vesicle-budding-and-protein-transport-from-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T16:57:01+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-yeast-sec17-gene-product-is-functionally-equivalent-to-mammalian-alpha-snap-protein/</loc><lastmod>2026-05-21T16:57:33+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/topology-and-functional-domains-of-sec63p-an-endoplasmic-reticulum-membrane-protein-required-for-secretory-protein-translocation/</loc><lastmod>2026-05-21T16:58:03+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/polypeptide-translocation-across-the-endoplasmic-reticulum-membrane/</loc><lastmod>2026-05-21T16:58:36+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/genetic-and-biochemical-analysis-of-vesicular-traffic-in-yeast/</loc><lastmod>2026-05-21T16:59:45+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/distinct-processes-mediate-glycoprotein-and-glycopeptide-export-from-the-endoplasmic-reticulum-in-saccharomyces-cerevisiae/</loc><lastmod>2026-05-21T17:00:28+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec21-is-a-gene-required-for-er-to-golgi-protein-transport-that-encodes-a-subunit-of-a-yeast-coatomer/</loc><lastmod>2026-05-21T17:01:00+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/reconstitution-of-protein-translocation-from-solubilized-yeast-membranes-reveals-topologically-distinct-roles-for-bip-and-cytosolic-hsc70/</loc><lastmod>2026-05-21T17:37:29+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/purification-and-characterization-of-sar1p-a-small-gtp-binding-protein-required-for-transport-vesicle-formation-from-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T17:37:57+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/cytosolic-sec13p-complex-is-required-for-vesicle-formation-from-the-endoplasmic-reticulum-in-vitro/</loc><lastmod>2026-05-21T17:38:50+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/requirement-for-a-gtpase-activating-protein-in-vesicle-budding-from-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T17:39:21+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/structural-and-functional-characterization-of-sec66p-a-new-subunit-of-the-polypeptide-translocation-apparatus-in-the-yeast-endoplasmic-reticulum/</loc><lastmod>2026-05-21T17:39:59+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec12-encodes-a-guanine-nucleotide-exchange-factor-essential-for-transport-vesicle-budding-from-the-er/</loc><lastmod>2026-05-21T17:40:51+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-sec13p-complex-and-reconstitution-of-vesicle-budding-from-the-er-with-purified-cytosolic-proteins/</loc><lastmod>2026-05-21T17:41:17+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/bfa-bodies-a-subcompartment-of-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T17:41:49+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/a-sec63p-bip-complex-from-yeast-is-required-for-protein-translocati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hekmanlab.org/publication/a-primer-on-vesicle-budding/</loc><lastmod>2026-05-21T18:19:27+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/protein-translocation-how-hsp70-pulls-it-off/</loc><lastmod>2026-05-21T18:19:54+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-engagement-of-sec61p-in-the-er-dislocation-process/</loc><lastmod>2026-05-21T18:20:20+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/pho86p-an-endoplasmic-reticulum-er-resident-protein-in-saccharomyces-cerevisiae-is-required-for-er-exit-of-the-high-affinity-phosphate-transporter-pho84p/</loc><lastmod>2026-05-21T18:21:44+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec24p-and-iss1p-function-interchangeably-in-transport-vesicle-formation-from-the-endoplasmic-reticulum-in-saccharomyces-cerevisiae/</loc><lastmod>2026-05-21T18:22:27+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-use-of-liposomes-to-study-copii-and-copi-coated-vesicle-formation-and-membrane-protein-sorting/</loc><lastmod>2026-05-21T18:22:51+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-p24-proteins-are-not-essential-for-vesicular-transport-in-saccharomyces-cerevisiae/</loc><lastmod>2026-05-21T18:23:17+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/lst1p-and-sec24p-cooperate-in-sorting-of-the-plasma-membrane-atpase-into-copii-vesicles-in-saccharomyces-cerevisiae/</loc><lastmod>2026-05-21T18:23:46+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/active-recycling-of-yeast-golgi-mannosyltransferase-complexes-through-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T18:24:12+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/vps10p-transport-from-the-trans-golgi-network-to-the-endosome-is-mediated-by-clathrin-coated-vesicles/</loc><lastmod>2026-05-21T18:24:43+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-adp-ribosylation-factor-nucleotide-exchange-factors-gea1p-and-gea2p-have-overlapping-but-not-redundant-functions-in-retrograde-transport-from-the-golgi-to-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T18:25:15+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/dynamics-of-the-copii-coat-with-gtp-and-stable-analogues/</loc><lastmod>2026-05-21T18:45:48+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/er-export-public-transportation-by-the-copii-coach/</loc><lastmod>2026-05-21T18:46:15+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/structure-of-the-sec23p-24p-and-sec13p-31p-complexes-of-copii/</loc><lastmod>2026-05-21T18:46:42+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/surface-structure-of-the-copii-coated-vesicle/</loc><lastmod>2026-05-21T18:47:07+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/vesicle-budding-from-endoplasmic-reticulum/</loc><lastmod>2026-05-21T18:47:50+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/a-subset-of-yeast-vacuolar-protein-sorting-mutants-is-blocked-in-one-branch-of-the-exocytic-pathway/</loc><lastmod>2026-05-21T18:48:22+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-yeast-clathrin-adaptor-protein-complex-1-is-required-for-the-efficient-retention-of-a-subset-of-late-golgi-membrane-proteins/</loc><lastmod>2026-05-21T18:49:00+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/ceramide-biosynthesis-is-required-for-the-formation-of-the-oligomeric-h-atpase-pma1p-in-the-yeast-endoplasmic-reticulum/</loc><lastmod>2026-05-21T18:49:23+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec16p-potentiates-the-action-of-copii-proteins-to-bud-transport-vesicles/</loc><lastmod>2026-05-21T18:49:57+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/lasker-basic-medical-research-award-sec-mutants-and-the-secretory-apparatus/</loc><lastmod>2026-05-21T18:50:22+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/cargo-selection-into-copii-vesicles-is-driven-by-the-sec24p-subunit/</loc><lastmod>2026-05-21T18:50:47+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/vps10p-cycles-between-the-tgn-and-the-late-endosome-via-the-plasma-membrane-in-clathrin-mutants/</loc><lastmod>2026-05-21T18:51:14+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/concentrative-sorting-of-secretory-cargo-proteins-into-copii-coated-vesicles/</loc><lastmod>2026-05-21T18:51:44+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/self-assembly-of-minimal-copii-cages/</loc><lastmod>2026-05-21T18:52:12+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/multiple-cargo-binding-sites-on-the-copii-subunit-sec24p-ensure-capture-of-diverse-membrane-proteins-into-transport-vesicles/</loc><lastmod>2026-05-21T18:52:36+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-yeasts-rho1p-and-pkc1p-regulate-the-transport-of-chitin-sy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pression-of-concern/</loc><lastmod>2026-05-21T19:38:22+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/role-of-sec61p-in-the-er-associated-degradation-of-short-lived-transmembrane-proteins/</loc><lastmod>2026-05-21T19:38:45+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/coordination-of-copii-vesicle-trafficking-by-sec23/</loc><lastmod>2026-05-21T19:39:11+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/membrane-fusion/</loc><lastmod>2026-05-21T19:39:36+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/retrospective-george-e-palade-1912-2008/</loc><lastmod>2026-05-21T19:40:01+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/tango1-facilitates-cargo-loading-at-endoplasmic-reticulum-exit-sites/</loc><lastmod>2026-05-21T19:40:31+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/retraction-for-venters-et-al-a-new-mechanism-of-neurodegeneration-a-proinflammatory-cytokine-inhibits-receptor-signaling-by-a-survival-peptide/</loc><lastmod>2026-05-21T19:41:32+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/pnas-takes-action-regarding-breach-of-nih-embargo-policy-on-a-pnas-paper/</loc><lastmod>2026-05-21T19:41:59+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/cargo-sorting-into-multivesicular-bodies-in-vitro/</loc><lastmod>2026-05-21T19:42:23+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/in-vitro-reconstitution-of-er-stress-induced-atf6-transport-in-copii-vesicles/</loc><lastmod>2026-05-21T19:42:53+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/change-is-good-life-outside-the-nucleus/</loc><lastmod>2026-05-21T19:43:24+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/the-exomer-coat-complex-transports-fus1p-to-the-plasma-membrane-via-a-novel-plasma-membrane-sorting-signal-in-yeast/</loc><lastmod>2026-05-21T19:43:53+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/sec24b-selectively-sorts-vangl2-to-regulate-planar-cell-polarity-during-neural-tube-closure/</loc><lastmod>2026-05-21T19:44:24+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/editorial-expression-of-concern-for-multiple-articles/</loc><lastmod>2026-05-21T19:44:54+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/editorial-expression-of-concern-for-choi-et-al-use-of-combinatorial-genetic-libraries-to-humanize-n-linked-glycosylation-in-the-yeast-pichia-pastoris/</loc><lastmod>2026-05-21T19:45:27+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/climate-change-and-the-integrity-of-science/</loc><lastmod>2026-05-21T19:46:17+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/editorial-expression-of-concern-a-bifunctional-trna-import-receptor-from-leishmania-mitochondria/</loc><lastmod>2026-05-21T19:46:38+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/retraction-for-liu-et-al-production-and-secretion-of-fatty-acids-in-genetically-engineered-cyanobacteria/</loc><lastmod>2026-05-21T19:47:42+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/patients-patience-and-the-publication-process/</loc><lastmod>2026-05-21T19:48:14+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/charting-the-secretory-pathway-in-a-simple-eukaryote/</loc><lastmod>2026-05-21T19:48:44+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/a-vesicle-carrier-that-mediates-peroxisome-protein-traffic-from-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T19:49:38+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/copii-mediated-vesicle-formation-at-a-glance/</loc><lastmod>2026-05-21T19:50:07+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/multibudded-tubules-formed-by-copii-on-artificial-liposomes/</loc><lastmod>2026-05-21T19:50:33+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/a-vesicle-carrier-that-mediates-peroxisome-protein-traffic-from-the-endoplasmic-reticulum-2/</loc><lastmod>2026-05-21T19:51:01+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/cranio-lenticulo-sutural-dysplasia-associated-with-defects-in-collagen-secretion/</loc><lastmod>2026-05-21T19:51:26+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/molecular-mechanism-of-protein-folding-in-the-cell/</loc><lastmod>2026-05-21T19:51:55+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/mice-deficient-in-lman1-exhibit-fv-and-fviii-deficiencies-and-liver-accumulation-of-%ce%b11-antitrypsin/</loc><lastmod>2026-05-21T19:52:19+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/myosin-v-transports-secretory-vesicles-via-a-rab-gtpase-cascade-and-interaction-with-the-exocyst-complex/</loc><lastmod>2026-05-21T19:52:45+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/copii-and-the-regulation-of-protein-sorting-in-mammals/</loc><lastmod>2026-05-21T22:23:00+00: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echanism-for-differential-sorting-of-the-planar-cell-polarity-proteins-frizzled6-and-vangl2-at-the-trans-golgi-network/</loc><lastmod>2026-05-21T20:26:04+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/a-new-twist-on-peer-review/</loc><lastmod>2026-05-21T20:26:27+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/tango1-and-sec12-are-copackaged-with-procollagen-i-to-facilitate-the-generation-of-large-copii-carriers/</loc><lastmod>2026-05-21T22:26:25+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/progress-and-promise/</loc><lastmod>2026-05-21T20:27:36+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/fatty-acid-binding-protein-5-modulates-the-sar1-gtpase-cycle-and-enhances-budding-of-large-copii-cargoes/</loc><lastmod>2026-05-21T22:26:28+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/regulation-of-lc3-lipidation-by-the-autophagy-specific-class-iii-phosphatidylinositol-3-kinase-complex/</loc><lastmod>2026-05-21T20:28:30+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/distinct-mechanisms-of-microrna-sorting-into-cancer-cell-derived-extracellular-vesicle-subtypes/</loc><lastmod>2026-05-21T22:26:52+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/coordinating-a-new-approach-to-basic-research-into-parkinsons-disease/</loc><lastmod>2026-05-21T21:47:51+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/new-factors-for-protein-transport-identified-by-a-genome-wide-crispri-screen-in-mammalian-cells/</loc><lastmod>2026-05-21T21:48:20+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/in-memoriam-lelio-orci-1937-2019/</loc><lastmod>2026-05-21T21:48:52+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/small-sequence-variations-between-two-mammalian-paralogs-of-the-small-gtpase-sar1-underlie-functional-differences-in-coat-protein-complex-ii-assembly/</loc><lastmod>2026-05-21T21:49:20+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/a-cln6-cln8-complex-recruits-lysosomal-enzymes-at-the-er-for-golgi-transfer/</loc><lastmod>2026-05-21T21:50:05+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/buoyant-density-fractionation-of-small-extracellular-vesicle-sub-populations-derived-from-mammalian-cells/</loc><lastmod>2026-05-21T21:50:31+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/open-science-takes-on-parkinsons-disease/</loc><lastmod>2026-05-21T21:51:00+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/assembly-of-%ce%b3-secretase-occurs-through-stable-dimers-after-exit-from-the-endoplasmic-reticulum/</loc><lastmod>2026-05-21T21:51:31+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/extracellular-vesicles-from-neurons-promote-neural-induction-of-stem-cells-through-cyclin-d1/</loc><lastmod>2026-05-21T22:27:05+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/low-bias-ncrna-libraries-using-ordered-two-template-relay-serial-template-jumping-by-a-modified-retroelement-reverse-transcriptase/</loc><lastmod>2026-05-21T21:52:31+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/apex-mediated-proximity-labeling-of-proteins-in-cells-targeted-by-extracellular-vesicles/</loc><lastmod>2026-05-21T21:52:58+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/selective-sorting-of-micrornas-into-exosomes-by-phase-separated-ybx1-condensates/</loc><lastmod>2026-05-21T21:53:28+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/syncytin-mediated-open-ended-membrane-tubular-connections-facilitate-the-intercellular-transfer-of-cargos-including-cas9-protein/</loc><lastmod>2026-05-21T22:27:10+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/chemical-disaggregation-of-alpha-synuclein-fibrils-as-a-therapy-for-synucleinopathies/</loc><lastmod>2026-05-21T21:54:53+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/annexin-a6-mediates-calcium-dependent-exosome-secretion-during-plasma-membrane-repair/</loc><lastmod>2026-05-21T22:27:02+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/unconventional-secretion-of-%ce%b1-synuclein-mediated-by-palmitoylated-dnajc5-oligomers/</loc><lastmod>2026-05-21T22:26:44+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/two-rna-binding-proteins-mediate-the-sorting-of-mir223-from-mitochondria-into-exosomes/</loc><lastmod>2026-05-21T21:56:06+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/biochemical-reconstitution-of-ca2-dependent-exosome-secretion-in-permeabilized-mammalian-cells/</loc><lastmod>2026-05-21T21:56:31+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/from-policy-to-practice-lessons-learned-from-an-open-science-funding-initiative/</loc><lastmod>2026-05-21T21:56:58+00:00</lastmod></url><url><loc>https://schekmanlab.org/publication/proteins-that-carry-dual-targeting-signals-can-act-as-te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