Literature DB >> 11747435

Inhibitor complexes of the Pseudomonas serine-carboxyl proteinase.

A Wlodawer1, M Li, A Gustchina, Z Dauter, K Uchida, H Oyama, N E Goldfarb, B M Dunn, K Oda.   

Abstract

Crystal structures of the serine-carboxyl proteinase from Pseudomonas sp. 101 (PSCP), complexed with a number of inhibitors, have been solved and refined at high- to atomic-level resolution. All of these inhibitors (tyrostatin, pseudo-tyrostatin, AcIPF, AcIAF, and chymostatin, as well as previously studied iodotyrostatin and pseudo-iodotyrostatin) make covalent bonds to the active site Ser287 through their aldehyde moieties, while their side chains occupy subsites S1-S4 of the enzyme. The mode of binding of the inhibitors is almost identical for their P1 and P2 side chains, while significant differences are observed for P3 and P4 (if present). Kinetic parameters for the binding of these nanomolar inhibitors to PSCP have been established and correlated with the observed mode of binding. The preferences of this enzyme for a larger side chain in P2 as well as Tyr or Phe in P1 are explained by the size, shape, and characteristics of the S2 and S1 regions of the protein structure, respectively. Networks of hydrogen bonds involving glutamic and aspartic acids have been analyzed for the atomic-resolution structure of the native enzyme. PSCP contains a calcium-binding site that consists of Asp328, Asp348, three amide carbonyl groups, and a water molecule, in almost perfect octahedral coordination. The presence of Ca(2+) cation is necessary for the activity of the enzyme.

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Year:  2001        PMID: 11747435     DOI: 10.1021/bi011817n

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  12 in total

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2.  The importance of dynamics in substrate-assisted catalysis and specificity.

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Review 3.  Protein crystallography for non-crystallographers, or how to get the best (but not more) from published macromolecular structures.

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Journal:  FEBS J       Date:  2007-11-23       Impact factor: 5.542

Review 4.  Unconventional serine proteases: variations on the catalytic Ser/His/Asp triad configuration.

Authors:  Ozlem Doğan Ekici; Mark Paetzel; Ross E Dalbey
Journal:  Protein Sci       Date:  2008-09-29       Impact factor: 6.725

5.  Short Carboxylic Acid-Carboxylate Hydrogen Bonds Can Have Fully Localized Protons.

Authors:  Jiusheng Lin; Edwin Pozharski; Mark A Wilson
Journal:  Biochemistry       Date:  2016-12-30       Impact factor: 3.162

6.  The QM/MM molecular dynamics and free energy simulations of the acylation reaction catalyzed by the serine-carboxyl peptidase kumamolisin-As.

Authors:  Qin Xu; Hao-Bo Guo; Alexander Wlodawer; Toru Nakayama; Hong Guo
Journal:  Biochemistry       Date:  2007-02-28       Impact factor: 3.162

7.  Clarification of the mechanism of acylation reaction and origin of substrate specificity of the serine-carboxyl peptidase sedolisin through QM/MM free energy simulations.

Authors:  Qin Xu; Jianzhuang Yao; Alexander Wlodawer; Hong Guo
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8.  Crystal structure and autoactivation pathway of the precursor form of human tripeptidyl-peptidase 1, the enzyme deficient in late infantile ceroid lipofuscinosis.

Authors:  Jayita Guhaniyogi; Istvan Sohar; Kalyan Das; Ann M Stock; Peter Lobel
Journal:  J Biol Chem       Date:  2008-11-26       Impact factor: 5.157

9.  In Vitro Selection of Cathepsin E-Activity-Enhancing Peptide Aptamers at Neutral pH.

Authors:  Madhu Biyani; Masae Futakami; Koichiro Kitamura; Tomoyo Kawakubo; Miho Suzuki; Kenji Yamamoto; Koichi Nishigaki
Journal:  Int J Pept       Date:  2011-03-22

10.  A model of tripeptidyl-peptidase I (CLN2), a ubiquitous and highly conserved member of the sedolisin family of serine-carboxyl peptidases.

Authors:  Alexander Wlodawer; Stewart R Durell; Mi Li; Hiroshi Oyama; Kohei Oda; Ben M Dunn
Journal:  BMC Struct Biol       Date:  2003-11-11
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