Literature for peptidase M12.213: ADAM13 peptidase

Summary Alignment Tree Sequences Sequence features Distribution Literature

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

    2024
  1. Pandey,A., Cousin,H., Kumar,S., Taylor,L., Chander,A., Coppenrath,K., Shaidani,N.I., Horb,M. and Alfandari,D.
    ADAM interact with large protein complexes to regulate Histone modification, gene expression and splicing
    bioRxiv PubMed  Europe PubMed DOI
  2. 2018
  3. Li,J., Perfetto,M., Neuner,R., Bahudhanapati,H., Christian,L., Mathavan,K., Bridges,L.C., Alfandari,D. and Wei,S.
    Xenopus ADAM19 regulates Wnt signaling and neural crest specification by stabilizing ADAM13
    Development145, dev158154-dev158154. PubMed  Europe PubMed DOI
  4. 2015
  5. Abbruzzese,G., Gorny,A.K., Kaufmann,L.T., Cousin,H., Kleino,I., Steinbeisser,H. and Alfandari,D.
    The Wnt receptor Frizzled-4 modulates ADAM13 metalloprotease activity
    J Cell Sci128, 1139-1149. PubMed  Europe PubMed DOI
  6. 2014
  7. Abbruzzese,G., Cousin,H., Salicioni,A.M. and Alfandari,D.
    GSK3 and Polo-like kinase regulate ADAM13 function during cranial neural crest cell migration
    Mol Biol Cell25, 4072-4082. PubMed  Europe PubMed DOI
  8. 2012
  9. Cousin,H., Abbruzzese,G., McCusker,C. and Alfandari,D.
    ADAM13 function is required in the 3 dimensional context of the embryo during cranial neural crest cell migration in Xenopus laevis
    Dev Biol368, 335-344. PubMed  Europe PubMed DOI
  10. Wei,S.
    ADAM metalloproteinases
    [ISSN:978-0-12-407744-7]3, 1086-1094. DOI
  11. 2011
  12. Cousin,H., Abbruzzese,G., Kerdavid,E., Gaultier,A. and Alfandari,D.
    Translocation of the cytoplasmic domain of ADAM13 to the nucleus is essential for Calpain8-a expression and cranial neural crest cell migration
    Dev Cell20, 256-263. PubMed  Europe PubMed DOI
  13. 2010
  14. Wei,S., Xu,G., Bridges,L.C., Williams,P., White,J.M. and DeSimone,D.W.
    ADAM13 induces cranial neural crest by cleaving class B Ephrins and regulating Wnt signaling
    Dev Cell19, 345-352. PubMed  Europe PubMed DOI
  15. 2004
  16. Wolfsberg,T.G. and White,J.M.
    ADAM metalloproteinases
    [ISSN:0-12-079610-4]2, 709-714.  V
  17. 2002
  18. [YEAR:28-6-2002]Gaultier,A., Cousin,H., Darribere,T. and Alfandari,D.
    ADAM13 disintegrin and cysteine-rich domains bind to the second heparin-binding domain of fibronectin
    J Biol Chem277, 23336-23344. PubMed  Europe PubMed DOI
  19. [YEAR:9-12-2002]Smith,K.M., Gaultier,A., Cousin,H., Alfandari,D., White,J.M. and DeSimone,D.W.
    The cysteine-rich domain regulates ADAM protease function in vivo
    J Cell Biol159, 893-902. PubMed  Europe PubMed DOI
  20. 2001
  21. [YEAR:26-6-2001]Alfandari,D., Cousin,H., Gaultier,A., Smith,K., White,J.M., Darribere,T. and DeSimone,D.W.
    Xenopus ADAM 13 is a metalloprotease required for cranial neural crest-cell migration
    Curr Biol11, 918-930. PubMed  Europe PubMed DOI
  22. 1997
  23. Alfandari,D., Wolfsberg,T.G., White,J.M. and DeSimone,D.W.
    ADAM 13: a novel ADAM expressed in somitic mesoderm and neural crest cells during Xenopus laevis development
    Dev Biol182, 314-330. PubMed  Europe PubMed DOI