Literature DB >> 11322895

Subsite specificity of trypanosomal cathepsin L-like cysteine proteases. Probing the S2 pocket with phenylalanine-derived amino acids.

F Lecaille1, E Authié, T Moreau, C Serveau, F Gauthier, G Lalmanach.   

Abstract

The S2 subsite of mammalian cysteine proteinases of the papain family is essential for specificity. Among natural amino acids, all these enzymes prefer bulky hydrophobic residues such as phenylalanine at P2. This holds true for their trypanosomal counterparts: cruzain from Trypanosoma cruzi and congopain from T. congolense. A detailed analysis of the S2 specificity of parasitic proteases was performed to gain information that might be of interest for the design of more selective pseudopeptidyl inhibitors. Nonproteogenic phenylalanyl analogs (Xaa) have been introduced into position P2 of fluorogenic substrates dansyl-Xaa-Arg-Ala-Pro-Trp, and their kinetic constants (Km, kcat/Km) have been determined with congopain and cruzain, and related host cathepsins B and L. Trypanosomal cysteine proteases are poorly stereoselective towards D/L-Phe, the inversion of chirality modifying the efficiency of the reaction but not the Km. Congopain binds cyclohexylalanine better than aromatic Phe derivatives. Another characteristic feature of congopain compared to cruzain and cathepsins B and L was that it could accomodate a phenylglycyl residue (kcat/Km = 1300 mM-1.s-1), while lengthening of the side chain by a methylene group only slightly impaired the specificity constant towards trypanosomal cysteine proteases. Mono- and di-halogenation or nitration of Phe did not affect Km for cathepsin L-like enzymes, but the presence of constrained Phe derivatives prevented a correct fitting into the S2 subsite. A model of congopain has been built to study the fit of Phe analogs within the S2 pocket. Phe analogs adopted a positioning within the S2 pocket similar to that of the Tyr of the cruzain/Z-Tyr-Ala-fluoromethylketone complex. However, cyclohexylalanine has an energetically favorable chair-like conformation and can penetrate deeper into the subsite. Fitting of modeled Phe analogs were in good agreement with kinetic parameters. Furthermore, a linear relationship could be established with logP, supporting the suggestion that fitting into the S2 pocket of trypanosomal cysteine proteases depends on the hydrophobicity of Phe analogs.

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Year:  2001        PMID: 11322895     DOI: 10.1046/j.1432-1327.2001.02172.x

Source DB:  PubMed          Journal:  Eur J Biochem        ISSN: 0014-2956


  6 in total

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2.  Peptidomimetic Vinyl Heterocyclic Inhibitors of Cruzain Effect Antitrypanosomal Activity.

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3.  Probing cathepsin K activity with a selective substrate spanning its active site.

Authors:  Fabien Lecaille; Enrico Weidauer; Maria A Juliano; Dieter Brömme; Gilles Lalmanach
Journal:  Biochem J       Date:  2003-10-15       Impact factor: 3.857

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5.  Biochemical Characterization and Substrate Specificity of Autophagin-2 from the Parasite Trypanosoma cruzi.

Authors:  Jelena Rajković; Marcin Poreba; Dejan Caglič; Robert Vidmar; Aleksandra Wilk; Agata Borowik; Guy Salvesen; Vito Turk; Marcin Drag; Boris Turk
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6.  Mapping inhibitor binding modes on an active cysteine protease via nuclear magnetic resonance spectroscopy.

Authors:  Gregory M Lee; Eaman Balouch; David H Goetz; Ana Lazic; James H McKerrow; Charles S Craik
Journal:  Biochemistry       Date:  2012-12-10       Impact factor: 3.162

  6 in total

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