ENGINEERING OF PAPAIN - SELECTIVE ALTERATION OF SUBSTRATE-SPECIFICITY BY SITE-DIRECTED MUTAGENESIS

被引:88
作者
KHOURI, HE [1 ]
VERNET, T [1 ]
MENARD, R [1 ]
PARLATI, F [1 ]
LAFLAMME, P [1 ]
TESSIER, DC [1 ]
GOURSALIN, B [1 ]
THOMAS, DY [1 ]
STORER, AC [1 ]
机构
[1] NATL RES COUNCIL CANADA, BIOTECHNOL RES INST, PROT ENGN SECT, 6100 ROYALMOUNT AVE, MONTREAL H4P 2R2, QUEBEC, CANADA
关键词
D O I
10.1021/bi00101a003
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
The S2 subsite specificity of the plant protease papain has been altered to resemble that of mammalian cathepsin B by site-directed mutagenesis. On the basis of amino acid sequence alignments for papain and cathepsin B, a double mutant (Val133Ala/Ser205Glu) was produced where Val133 and Ser205 are replaced by Ala and Glu, respectively, as well as a triple mutant (Val133Ala/Val157Gly/Ser205Glu), where Val157 is also replaced by Gly. Three synthetic substrates were used for the kinetic characterization of the mutants, as well as wild-type papain and cathepsin B: CBZ-Phe-Arg-MCA, CBZ-Arg-Arg-MCA, and CBZ-Cit-Arg-MCA. The ratio of k(cat)/K(M) obtained by using CBZ-Phe-Arg-MCA as substrate over that obtained with CBZ-Arg-Arg-MCA is 8.0 for the Val133Ala/Ser205Glu variant, while the equivalent values for wild-type papain and cathepsin B are 904 and 3.6, respectively. This change in specificity has been achieved by replacing only two amino acids out of a total of 212 in papain and with little loss in overall enzyme activity. However, further replacement of Val157 by Gly as in Val133Ala/Val157Gly/Ser205Glu causes an important decrease in activity, although the enzyme still displays a cathepsin B like substrate specificity. In addition, the pH dependence of activity for the Val133Ala/Ser205Glu variant compares well with that of cathepsin B. In particular, the activity toward CBZ-Arg-Arg-MCA is modulated by a group with a pK(a) of 5.51, a behavior that is also encountered in the case of cathepsin B but is absent with papain. Results of this study suggest that sequence alignment of cysteine proteases coupled with the structural information that is available for papain can be used to achieve a better understanding of the molecular mechanism and specificity of structurally and functionally related cysteine proteases.
引用
收藏
页码:8929 / 8936
页数:8
相关论文
共 47 条
[1]  
BAJKOWSKI AS, 1983, J BIOL CHEM, V258, P1645
[2]  
Baker E.N., 1987, BIOL MACROMOL, V3, P314
[3]  
Barrett A. J., 1977, PROTEINASES MAMMALIA, P181
[5]  
BARRETT AJ, 1981, METHOD ENZYMOL, V80, P535
[6]   MAPPING ACTIVE SITE OF PAPAIN WITH AID OF PEPTIDE SUBSTRATES AND INHIBITORS [J].
BERGER, A ;
SCHECHTER, I .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 1970, 257 (813) :249-+
[7]   8-L-CITRULLINE VASOPRESSIN AND 8-L-CITRULLINE OXYTOCIN [J].
BODANSZKY, M ;
BIRKHIMER, CA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1962, 84 (24) :4943-&
[8]   STRUCTURAL PLASTICITY BROADENS THE SPECIFICITY OF AN ENGINEERED PROTEASE [J].
BONE, R ;
SILEN, JL ;
AGARD, DA .
NATURE, 1989, 339 (6221) :191-195
[9]   EVIDENCE THAT BINDING TO THE S-2-SUBSITE OF PAPAIN MAY BE COUPLED WITH CATALYTICALLY RELEVANT STRUCTURAL-CHANGE INVOLVING THE CYSTEINE-25-HISTIDINE-159 DIAD - KINETICS OF THE REACTION OF PAPAIN WITH A 2-PROTONIC-STATE REACTIVITY PROBE CONTAINING A HYDROPHOBIC SIDE-CHAIN [J].
BROCKLEHURST, K ;
MALTHOUSE, JPG ;
SHIPTON, M .
BIOCHEMICAL JOURNAL, 1979, 183 (02) :223-231
[10]  
Brocklehurst K., 1987, HYDROLYTIC ENZYMES, P39