Literature for peptidase C50.004: SEP-1 peptidase (Nematoda)

Summary Gene structure Alignment Sequences Sequence features Distribution Structure Literature

(Topics flags: S Structure. To select only the references relevant to a single topic, click the link above. See explanation.)

    2018
  1. Melesse,M., Sloan,D.E., Benthal,J.T., Caylor,Q., Gosine,K., Bai,X. and Bembenek,J.N.
    Genetic identification of separase regulators in Caenorhabditis elegans
    G3 (Bethesda)8, 695-705. PubMed  Europe PubMed DOI
  2. Melesse,M., Bembenek,J.N. and Zhulin,I.B.
    Conservation of the separase regulatory domain
    Biol Direct13, 7-7. PubMed  Europe PubMed DOI
  3. 2017
  4. Bai,X. and Bembenek,J.N.
    Protease dead separase inhibits chromosome segregation and RAB-11 vesicle trafficking
    Cell Cycle16, 1902-1917. PubMed  Europe PubMed DOI
  5. Boland,A., Martin,T.G., Zhang,Z., Yang,J., Bai,X.C., Chang,L., Scheres,S.H. and Barford,D.
    Cryo-EM structure of a metazoan separase-securin complex at near-atomic resolution
    Nat Struct Mol Biol24, 414-418. PubMed  Europe PubMed DOI  S
  6. Singleton,M.R. and Uhlmann,F.
    Separase-securin complex: a cunning way to control chromosome segregation
    Nat Struct Mol Biol24, 337-339. PubMed  Europe PubMed DOI  S
  7. 2016
  8. Bachmann,G., Richards,M.W., Winter,A., Beuron,F., Morris,E. and Bayliss,R.
    A closed conformation of the Caenorhabditis elegans separase-securin complex
    Open Biol6, 160032-160032. PubMed  Europe PubMed DOI  S
  9. 2015
  10. Monen,J., Hattersley,N., Muroyama,A., Stevens,D., Oegema,K. and Desai,A.
    Separase cleaves the N-tail of the CENP-A related protein CPAR-1 at the meiosis I metaphase-anaphase transition in C. elegans
    PLoS ONE10, e0125382- PubMed  Europe PubMed DOI
  11. 2014
  12. Mitchell,D.M., Uehlein-Klebanow,L.R. and Bembenek,J.N.
    Protease-dead separase is dominant negative in the C. elegans embryo
    PLoS ONE9, e108188-e108188. PubMed  Europe PubMed DOI
  13. 2013
  14. Cabral,G., Sans,S.S., Cowan,C.R. and Dammermann,A.
    Multiple mechanisms contribute to centriole separation in C. elegans
    Curr Biol23, 1380-1387. PubMed  Europe PubMed DOI
  15. 2012
  16. Kimura,K. and Kimura,A.
    Rab6 is required for the exocytosis of cortical granules and the recruitment of separase to the granules during the oocyte-to-embryo transition in Caenorhabditis elegans
    J Cell Sci125, 5897-5905. PubMed  Europe PubMed DOI
  17. 2011
  18. Richie,C.T., Bembenek,J.N., Chestnut,B., Furuta,T., Schumacher,J.M., Wallenfang,M. and Golden,A.
    Protein phosphatase 5 is a negative regulator of separase function during cortical granule exocytosis in C. elegans
    J Cell Sci124, 2903-2913. PubMed  Europe PubMed DOI
  19. 2010
  20. Bembenek,J.N., White,J.G. and Zheng,Y.
    A role for separase in the regulation of RAB-11-positive vesicles at the cleavage furrow and midbody
    Curr Biol20, 259-264. PubMed  Europe PubMed DOI
  21. Lopez-Aviles,S. and Uhlmann,F.
    Cell cycle: the art of multi-tasking
    Curr Biol20, R101-R103. PubMed  Europe PubMed DOI
  22. 2007
  23. Bembenek,J.N., Richie,C.T., Squirrell,J.M., Campbell,J.M., Eliceiri,K.W., Poteryaev,D., Spang,A., Golden,A. and White,J.G.
    Cortical granule exocytosis in C. elegans is regulated by cell cycle components including separase
    Development134, 3837-3848. PubMed  Europe PubMed DOI
  24. 2002
  25. Rappleye,C.A., Tagawa,A., Lyczak,R., Bowerman,B. and Aroian,R.V.
    The anaphase-promoting complex and separin are required for embryonic anterior-posterior axis formation
    Dev Cell2, 195-206. PubMed  Europe PubMed DOI
  26. 2001
  27. [YEAR:27-11-2001]Siomos,M.F., Badrinath,A., Pasierbek,P., Livingstone,D., White,J., Glotzer,M. and Nasmyth,K.
    Separase is required for chromosome segregation during meiosis I in Caenorhabditis elegans
    Curr Biol11, 1825-1835. PubMed  Europe PubMed DOI