Probing the specificity of cysteine proteinases at subsites remote from the active site:: analysis of P4, P3, P2′ and P3′ variations in extended substrates

被引:64
作者
Portaro, FCV
Santos, ABF
Cezari, MHS
Juliano, MA
Juliano, L [1 ]
Carmona, E
机构
[1] Inst Butantan, Dept Pharmacol, BR-05503900 Sao Paulo, Brazil
[2] Escola Paulista Med, Dept Biofis, BR-04044020 Sao Paulo, Brazil
关键词
cathepsins B and L; fluorogenic peptide; limited proteolysis; papain; protease substrate;
D O I
10.1042/0264-6021:3470123
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We have determined the kinetic parameters for the hydrolysis by papain, cathepsin B and cathepsin L of internally quenched fluorescent peptides derived from the lead peptides Abz-AAFRSAQ-EDDnp [in which Abz and EDDnp stand for o-aminobenzoic acid and N-(2,4-dinitrophenyl)ethylenediamine respectively], to map the specificity of S-4 and S-3 subsites, and Abz-AFRSAAQ-EDDnp, to identify the specificity of S-2' and S-3'. Abz and EDDnp were the fluorescent quencher pair. These two series of peptides were cleaved at the Arg-Ser bond and systematic modifications at P-4, P-3, P-2' and P-3' were made. The S-4 to S-2' subsites had a significant influence on the hydrolytic efficiencies of the three enzymes. Only papain activity was observed to be dependent on S-3', indicating that its binding site is larger than those of cathepsins B and L. Hydrophobic amino acids were accepted at S-4, S-3, S-3' and S-3' of the three enzymes. The best substrates for cathepsins L and B had Trp and Asn at P-2' respectively; variations at this position were less accepted by these enzymes. The best substrates for papain were peptides containing Trp, Tyr or Asn at P-3'. Basic residues at P-3 and p(4) were well accepted by cathepsin L and papain. We also explored the susceptibility of substrates Abz-AFRSXAQ-EDDnp, modified at P-2' (X), to human cathepsin B mutants from which one or two occluding loop contacts had been removed. The modifications at His(111) (H111A) and His(110) (H110A) of cathepsin B led to an increase in k(cat) values of one or two orders of magnitude. The hydrolytic efficiencies of these cathepsin B mutants became closer to those of papain or cathepsin L.
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页码:123 / 129
页数:7
相关论文
共 51 条
[21]   Role of the occluding loop in cathepsin B activity [J].
Illy, C ;
Quraishi, O ;
Wang, J ;
Purisima, E ;
Vernet, T ;
Mort, JS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (02) :1197-1202
[22]   CRYSTAL-STRUCTURES OF RECOMBINANT RAT CATHEPSIN-B AND A CATHEPSIN B-INHIBITOR COMPLEX - IMPLICATIONS FOR STRUCTURE-BASED INHIBITOR DESIGN [J].
JIA, ZC ;
HASNAIN, S ;
HIRAMA, T ;
LEE, X ;
MORT, JS ;
TO, R ;
HUBER, CP .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (10) :5527-5533
[23]   PARTICIPATION OF CATHEPSIN-L ON BONE-RESORPTION [J].
KAKEGAWA, H ;
NIKAWA, T ;
TAGAMI, K ;
KAMIOKA, H ;
SUMITANI, K ;
KAWATA, T ;
DROBNICKOSOROK, M ;
LENARCIC, B ;
TURK, V ;
KATUNUMA, N .
FEBS LETTERS, 1993, 321 (2-3) :247-250
[24]   ACTION OF CATHEPSIN-L ON THE OXIDIZED B-CHAIN OF BOVINE INSULIN [J].
KARGEL, HJ ;
DETTMER, R ;
ETZOLD, G ;
KIRSCHKE, H ;
BOHLEY, P ;
LANGNER, J .
FEBS LETTERS, 1980, 114 (02) :257-260
[25]  
KATUMUNA N, 1987, AM J PATHOL, V127, P681
[26]   CRYSTAL-STRUCTURE OF PAPAIN-E64-C COMPLEX - BINDING DIVERSITY OF E64-C TO PAPAIN S(2) AND S(3) SUBSITES [J].
KIM, MJ ;
YAMAMOTO, D ;
MATSUMOTO, K ;
INOUE, M ;
ISHIDA, T ;
MIZUNO, H ;
SUMIYA, S ;
KITAMURA, K .
BIOCHEMICAL JOURNAL, 1992, 287 :797-803
[27]  
Kirschke H, 1995, PROTEIN PROFILE, V2, P1587
[28]   PEPTIDYL (ACYLOXY)METHYL KETONES AND THE QUIESCENT AFFINITY LABEL CONCEPT - THE DEPARTING GROUP AS A VARIABLE STRUCTURAL ELEMENT IN THE DESIGN OF INACTIVATORS OF CYSTEINE PROTEINASES [J].
KRANTZ, A ;
COPP, LJ ;
COLES, PJ ;
SMITH, RA ;
HEARD, SB .
BIOCHEMISTRY, 1991, 30 (19) :4678-4687
[29]   Revisiting the S2 specificity of papain by structural analogs of Phe [J].
Lecaille, F ;
Serveau, C ;
Gauthier, F ;
Lalmanach, G .
FEBS LETTERS, 1999, 445 (2-3) :311-314
[30]   A PROTEIN ENGINEERING STUDY OF THE ROLE OF ASPARTATE-158 IN THE CATALYTIC MECHANISM OF PAPAIN [J].
MENARD, R ;
KHOURI, HE ;
PLOUFFE, C ;
DUPRAS, R ;
RIPOLL, D ;
VERNET, T ;
TESSIER, DC ;
LALIBERTE, F ;
THOMAS, DY ;
STORER, AC .
BIOCHEMISTRY, 1990, 29 (28) :6706-6713