Tethering complex ATP-binding subunit VPS33 YLR396C

fungal protein found in Saccharomyces cerevisiae S288c
Protein protein Q27549228
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Tethering complex ATP-binding subunit VPS33 YLR396C

Summary

Tethering complex ATP-binding subunit VPS33 YLR396C is a protein[1].

Key Facts

  • Tethering complex ATP-binding subunit VPS33 YLR396C's instance of is recorded as protein[2].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's subclass of is recorded as protein[3].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's UniProt protein ID is recorded as P20795[4].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's part of is recorded as Sec1-like superfamily[5].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's part of is recorded as Vacuolar protein sorting-associated protein 33[6].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's part of is recorded as Sec1-like, domain 2[7].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's RefSeq protein ID is recorded as NP_013500[8].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's molecular function is recorded as ATP binding[9].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's molecular function is recorded as phosphatidylinositol binding[10].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's molecular function is recorded as protein binding[11].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's cell component is recorded as CORVET complex[12].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's cell component is recorded as cytosol[13].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's cell component is recorded as HOPS complex[14].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's cell component is recorded as fungal-type vacuole[15].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's cell component is recorded as fungal-type vacuole membrane[16].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's cell component is recorded as vacuole[17].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's biological process is recorded as regulation of vacuole fusion, non-autophagic[18].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's biological process is recorded as vesicle fusion with vacuole[19].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's biological process is recorded as vacuole organization[20].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's biological process is recorded as vacuole fusion, non-autophagic[21].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's biological process is recorded as vesicle-mediated transport[22].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's biological process is recorded as piecemeal microautophagy of the nucleus[23].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's biological process is recorded as protein transport[24].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's biological process is recorded as vesicle docking[25].
  • Tethering complex ATP-binding subunit VPS33 YLR396C's biological process is recorded as endocytosis[26].

References

Programmatic citations — every numbered marker resolves to a verifiable graph row below.

Direct Wikidata claims

  1. [2] . Q905695. Retrieved . wikidata.org.
  2. [3] . Q905695. Retrieved . wikidata.org.
  3. [4] . Q905695. Retrieved . wikidata.org.
  4. [5] . InterPro Release 71.0. ebi.ac.uk. Provenance: wikidata.org.
  5. [6] . InterPro Release 71.0. ebi.ac.uk. Provenance: wikidata.org.
  6. [7] . InterPro Release 71.0. ebi.ac.uk. Provenance: wikidata.org.
  7. [8] . Q20641742. Retrieved . wikidata.org.
  8. [9] . The Vesicle Transport Protein Vps33p Is an ATP-binding Protein That Localizes to the Cytosol in an Energy-dependent Manner. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  9. [10] . Purification of active HOPS complex reveals its affinities for phosphoinositides and the SNARE Vam7p. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  10. [11] . The SM protein Vps33 and the t-SNARE H(abc) domain promote fusion pore opening.. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  11. [12] . The CORVET tethering complex interacts with the yeast Rab5 homolog Vps21 and is involved in endo-lysosomal biogenesis. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  12. [13] . The Vesicle Transport Protein Vps33p Is an ATP-binding Protein That Localizes to the Cytosol in an Energy-dependent Manner. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  13. [14] . A Ypt/Rab effector complex containing the Sec1 homolog Vps33p is required for homotypic vacuole fusion. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  14. [15] . Vacuole fusion at a ring of vertex docking sites leaves membrane fragments within the organelle. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  15. [16] . A Ypt/Rab effector complex containing the Sec1 homolog Vps33p is required for homotypic vacuole fusion. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  16. [17] . GOA. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  17. [18] . HOPS proofreads the trans-SNARE complex for yeast vacuole fusion. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  18. [19] . A multispecificity syntaxin homologue, Vam3p, essential for autophagic and biosynthetic protein transport to the vacuole. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  19. [20] . The SLP1 gene of Saccharomyces cerevisiae is essential for vacuolar morphogenesis and function. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  20. [21] . A Ypt/Rab effector complex containing the Sec1 homolog Vps33p is required for homotypic vacuole fusion. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  21. [22] . GOA. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  22. [23] . Piecemeal microautophagy of the nucleus requires the core macroautophagy genes.. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  23. [24] . GOA. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  24. [25] . A multispecificity syntaxin homologue, Vam3p, essential for autophagic and biosynthetic protein transport to the vacuole. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  25. [26] . The Sec1/Munc18 protein, Vps33p, functions at the endosome and the vacuole of Saccharomyces cerevisiae. Retrieved . ebi.ac.uk. Provenance: wikidata.org.

Class ancestry

  1. [1] . Wikidata. wikidata.org.

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Use these citations when quoting this entity in research, articles, AI prompts, or wherever provenance matters. We aggregate Wikidata + Wikipedia + authoritative open-data sources; the stitched, scored, cross-referenced view is what 4ort.xyz contributes.

APA 4ort.xyz Knowledge Graph. (2026). Tethering complex ATP-binding subunit VPS33 YLR396C. Retrieved May 3, 2026, from https://4ort.xyz/entity/tethering-complex-atp-binding-subunit-vps33-ylr396c
MLA “Tethering complex ATP-binding subunit VPS33 YLR396C.” 4ort.xyz Knowledge Graph, 4ort.xyz, 3 May. 2026, https://4ort.xyz/entity/tethering-complex-atp-binding-subunit-vps33-ylr396c.
BibTeX @misc{4ortxyz_tethering-complex-atp-binding-subunit-vps33-ylr396c_2026, author = {{4ort.xyz Knowledge Graph}}, title = {{Tethering complex ATP-binding subunit VPS33 YLR396C}}, year = {2026}, url = {https://4ort.xyz/entity/tethering-complex-atp-binding-subunit-vps33-ylr396c}, note = {Accessed: 2026-05-03}}
LLM prompt According to 4ort.xyz Knowledge Graph (aggregator of Wikidata, Wikipedia, and authoritative open-data sources): Tethering complex ATP-binding subunit VPS33 YLR396C — https://4ort.xyz/entity/tethering-complex-atp-binding-subunit-vps33-ylr396c (retrieved 2026-05-03)

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