Literature for family M1

Family

Summary Holotypes Alignment Tree Genomes Structure Literature H-seq M-seq Architecture


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

    2023
  1. Evnouchidou,I., Koumantou,D., Nugue,M. and Saveanu,L. \<br\>M1-aminopeptidase family - beyond antigen-trimming activities\<br\>Curr Opin Immunol (2023) 83, 102337. PubMed  Europe PubMed DOI  V
  2. 2019
  3. Chen,S., Xu,B., Chen,E., Wang,J., Lu,J., Donadio,S., Ge,H. and Wang,H. \<br\>Zn-dependent bifunctional proteases are responsible for leader peptide processing of class III lanthipeptides\<br\>Proc Natl Acad Sci U S A (2019) 116, 2533-2538. PubMed  Europe PubMed DOI
  4. Hanson,A.L., Morton,C.J., Parker,M.W., Bessette,D. and Kenna,T.J. \<br\>The genetics, structure and function of the M1 aminopeptidase oxytocinase subfamily and their therapeutic potential in immune-mediated disease\<br\>Hum Immunol (2019) 80, 281-289. PubMed  Europe PubMed DOI
  5. 2018
  6. Yang,W., Riley,B.T., Lei,X., Porebski,B.T., Kass,I., Buckle,A.M. and McGowan,S. \<br\>Generation of AMBER force field parameters for zinc centres of M1 and M17 family aminopeptidases\<br\>J Biomol Struct Dyn (2018) 36, 2595-2604. PubMed  Europe PubMed DOI
  7. 2017
  8. Drinkwater,N., Lee,J., Yang,W., Malcolm,T.R. and McGowan,S. \<br\>M1 aminopeptidases as drug targets: broad applications or therapeutic niche?\<br\>FEBS J (2017) 284, 1473-1488. PubMed  Europe PubMed DOI  T
  9. Peng,G., McEwen,A.G., Olieric,V., Schmitt,C., Albrecht,S., Cavarelli,J. and Tarnus,C. \<br\>Insight into the remarkable affinity and selectivity of the aminobenzosuberone scaffold for the M1 aminopeptidases family based on structure analysis\<br\>Proteins (2017) 85, 1413-1421. PubMed  Europe PubMed DOI  I
  10. 2016
  11. Mohandas,N., Young,N.D., Jabbar,A., Korhonen,P.K., Koehler,A.V., Hall,R.S., Hu,M., Hofmann,A. and Gasser,R.B. \<br\>The complement of family M1 aminopeptidases of Haemonchus contortus - biotechnological implications\<br\>Biotechnol Adv (2016) 34, 65-76. PubMed  Europe PubMed DOI
  12. 2015
  13. Cadel,S., Darmon,C., Pernier,J., herve,G. and Foulon,T. \<br\>The M1 family of vertebrate aminopeptidases: role of evolutionarily conserved tyrosines in the enzymatic mechanism of aminopeptidase B\<br\>Biochimie (2015) 109, 67-77. PubMed  Europe PubMed DOI
  14. 2012
  15. Wong,A.H., Zhou,D. and Rini,J.M. \<br\>The X-ray crystal structure of human aminopeptidase N reveals a novel dimer and the basis for peptide processing\<br\>J Biol Chem (2012) 287, 36804-36813. PubMed  Europe PubMed DOI  S  I
  16. 2006
  17. Matsui,M., Fowler,J.H. and Walling,L.L. \<br\>Leucine aminopeptidases: diversity in structure and function\<br\>Biol Chem (2006) 387, 1535-1544. PubMed  Europe PubMed DOI
  18. 2005
  19. Tsujimoto,M. and Hattori,A. \<br\>The oxytocinase subfamily of M1 aminopeptidases\<br\>Biochim Biophys Acta (2005) 1751, 9-18. PubMed  Europe PubMed DOI
  20. 2004
  21. Albiston,A.L., Ye,S. and Chai,S.Y. \<br\>Membrane bound members of the M1 family: more than aminopeptidases\<br\>Protein Pept Lett (2004) 11, 491-500. PubMed  Europe PubMed DOI
  22. 1997
  23. Laustsen,P.G., Rasmussen,T.E., Petersen,K., Pedraza-Diaz,S., Moestrup,S.K., Gliemann,J., Sottrup-Jensen,L. and Kristensen,T. \<br\>The complete amino acid sequence of human placental oxytocinase\<br\>Biochim Biophys Acta (1997) 1352, 1-7. PubMed  Europe PubMed DOI
  24. 1995
  25. Christensen,J.E., Lin,D.L., Palva,A. and Steele,J.L. \<br\>Sequence analysis, distribution and expression of an aminopeptidase N-encoding gene from Lactobacillus helveticus CNRZ32\<br\>Gene (1995) 155, 89-93. PubMed  Europe PubMed DOI