Literature for peptidase S46.002: dipeptidyl-peptidase 11 (Porphyromonas gingivalis-type)

Summary Alignment Tree Sequences Sequence features Distribution Structure Literature Substrates

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

    2019
  1. Sakamoto,Y., Suzuki,Y., Nakamura,A., Watanabe,Y., Sekiya,M., Roppongi,S., Kushibiki,C., Iizuka,I., Tani,O., Sakashita,H., Inaka,K., Tanaka,H., Yamada,M., Ohta,K., Honma,N., Shida,Y., Ogasawara,W., Nakanishi-Matsui,M., Nonaka,T., Gouda,H. and Tanaka,N.
    Fragment-based discovery of the first nonpeptidyl inhibitor of an S46 family peptidase
    Sci Rep9, 13587-13587. PubMed  Europe PubMed DOI  S  I
  2. 2018
  3. Nemoto,T.K., Bezerra,G.A., Ono,T., Nishimata,H., Fujiwara,T. and Ohara-Nemoto,Y.
    Identification of a new subtype of dipeptidyl peptidase 11 and a third group of the S46-family members specifically present in the genus Bacteroides
    Biochimie147, 25-35. PubMed  Europe PubMed DOI
  4. Ohara-Nemoto,Y., Shimoyama,Y., Nakasato,M., Nishimata,H., Ishikawa,T., Sasaki,M., Kimura,S. and Nemoto,T.K.
    Distribution of dipeptidyl peptidase (DPP) 4, DPP5, DPP7, and DPP11 in human oral microbiota - potent biomarkers indicating presence of periodontopathic bacteria
    FEMS Microbiol Lett365, PubMed  Europe PubMed DOI
  5. 2017
  6. Bezerra,G.A., Ohara-Nemoto,Y., Cornaciu,I., Fedosyuk,S., Hoffmann,G., Round,A., Marquez,J.A., Nemoto,T.K. and Djinovic-Carugo,K.
    Bacterial protease uses distinct thermodynamic signatures for substrate recognition
    Sci Rep7, 2848-2848. PubMed  Europe PubMed DOI  I
  7. Hack,K., Renzi,F., Hess,E., Lauber,F., Douxfils,J., Dogne,J.M. and Cornelis,G.R.
    Inactivation of human coagulation factor X by a protease of the pathogen Capnocytophaga canimorsus
    J Thromb Haemost15, 487-499. PubMed  Europe PubMed DOI
  8. 2015
  9. Sakamoto,Y., Suzuki,Y., Iizuka,I., Tateoka,C., Roppongi,S., Fujimoto,M., Inaka,K., Tanaka,H., Yamada,M., Ohta,K., Gouda,H., Nonaka,T., Ogasawara,W. and Tanaka,N.
    Structural and mutational analyses of dipeptidyl peptidase 11 from Porphyromonas gingivalis reveal the molecular basis for strict substrate specificity
    Sci Rep5, 11151-11151. PubMed  Europe PubMed DOI  P  S
  10. Sakamoto,Y., Suzuki,Y., Iizuka,I., Tateoka,C., Roppongi,S., Fujimoto,M., Gouda,H., Nonaka,T., Ogasawara,W. and Tanaka,N.
    Crystallization and preliminary X-ray crystallographic studies of dipeptidyl peptidase 11 from Porphyromonas gingivalis
    Acta Crystallogr F Struct Biol Commun71, 206-210. PubMed  Europe PubMed DOI
  11. 2014
  12. Nishimata,H., Ohara-Nemoto,Y., Baba,T.T., Hoshino,T., Fujiwara,T., Shimoyama,Y., Kimura,S. and Nemoto,T.K.
    Identification of dipeptidyl-peptidase (DPP)5 and DPP7 in Porphyromonas endodontalis, distinct from those in Porphyromonas gingivalis
    PLoS ONE9, e114221-e114221. PubMed  Europe PubMed DOI
  13. 2013
  14. Rouf,S.M., Ohara-Nemoto,Y., Ono,T., Shimoyama,Y., Kimura,S. and Nemoto,T.K.
    Phenylalanine 664 of dipeptidyl peptidase (DPP) 7 and phenylalanine 671 of DPP11 mediate preference for P2-position hydrophobic residues of a substrate
    FEBS Open Bio3, 177-183. PubMed  Europe PubMed DOI  P
  15. Rouf,S.M., Ohara-Nemoto,Y., Hoshino,T., Fujiwara,T., Ono,T. and Nemoto,T.K.
    Discrimination based on Gly and Arg/Ser at position 673 between dipeptidyl-peptidase (DPP) 7 and DPP11, widely distributed DPPs in pathogenic and environmental gram-negative bacteria
    Biochimie95, 824-832. PubMed  Europe PubMed DOI
  16. 2011
  17. Ohara-Nemoto,Y., Shimoyama,Y., Kimura,S., Kon,A., Haraga,H., Ono,T. and Nemoto,T.K.
    Asp- and Glu-specific novel dipeptidyl peptidase 11 of Porphyromonas gingivalis ensures utilization of proteinaceous energy sources
    J Biol Chem286, 38115-38127. PubMed  Europe PubMed DOI  P