Altered flexibility in the substrate-binding site of related native and engineered high-alkaline Bacillus subtilisins

被引:234
作者
Mulder, FAA
Schipper, D
Bott, R
Boelens, R
机构
[1] Univ Utrecht, Bijvoet Ctr Biomol Res, NL-3584 CH Utrecht, Netherlands
[2] Gist Brocades BV, Res & Dev, NL-2600 MA Delft, Netherlands
[3] Genencor Int Inc, Palo Alto, CA 94304 USA
关键词
N-15; relaxation; NMR; protein dynamics; protein engineering; serine protease;
D O I
10.1006/jmbi.1999.3034
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
High-alkaline serine proteases have been successfully applied as protein degrading components of detergent formulations and are subject to extensive protein engineering efforts to improve their stability and performance. Dynamics has been suggested to play an important role in determining enzyme activity and specificity and it is therefore of interest to establish how local changes in internal mobility affect protein stability, specificity and performance. Here we present the dynamic properties of the 269 residue serine proteases subtilisin PB92 (Maxacal(TM)) and subtilisin BLS (Savinase(TM)), secreted by Bacillus lentus, and an engineered quadruple variant, DSAI, that has improved washing performance. T-1, T-2 and heteronuclear NOE measurements of the N-15 nuclei indicate that for all three proteins the majority of the backbone is very rigid, with only a limited number of residues being involved in local mobility. Many of the residues that constitute the S1 and S4 pockets, determining substrate specificity, are flexible in solution. In contrast, the backbone amides of the residues that constitute the catalytic triad do not exhibit any motion. Subtilisins PB92, BLS and DSAI demonstrate similar but not identical NMR relaxation rates. A detailed analysis of local flexibility indicates that the motion of residues Thr143 and Ala194 becomes more restricted in subtilisin BLS and DSAI. Noteworthy, the loop regions involved in substrate binding become more structured in the engineered variant as compared with the two native proteases, suggesting a relation between altered dynamics and performance. Similar conclusions have been established by X-ray crystallograpic methods, as shown in the accompanying paper. (C) 1999 Academic Press.
引用
收藏
页码:111 / 123
页数:13
相关论文
共 55 条
[31]   An off-resonance rotating frame relaxation experiment for the investigation of macromolecular dynamics using adiabatic rotations [J].
Mulder, FAA ;
de Graaf, RA ;
Kaptein, R ;
Boelens, R .
JOURNAL OF MAGNETIC RESONANCE, 1998, 131 (02) :351-357
[32]  
Mulder FAA, 1996, J BIOMOL NMR, V8, P223, DOI 10.1007/BF00211169
[33]  
MULDER FAA, 1998, THESIS UTRECHT U UTR
[34]   THE REFINED CRYSTAL-STRUCTURE OF SUBTILISIN CARLSBERG AT 2.5 A RESOLUTION [J].
NEIDHART, DJ ;
PETSKO, GA .
PROTEIN ENGINEERING, 1988, 2 (04) :271-276
[35]   SUPPRESSION OF THE EFFECTS OF CROSS-CORRELATION BETWEEN DIPOLAR AND ANISOTROPIC CHEMICAL-SHIFT RELAXATION MECHANISMS IN THE MEASUREMENT OF SPIN SPIN RELAXATION RATES [J].
PALMER, AG ;
SKELTON, NJ ;
CHAZIN, WJ ;
WRIGHT, PE ;
RANCE, M .
MOLECULAR PHYSICS, 1992, 75 (03) :699-711
[36]   LARGE INCREASES IN GENERAL STABILITY FOR SUBTILISIN BPN' THROUGH INCREMENTAL CHANGES IN THE FREE-ENERGY OF UNFOLDING [J].
PANTOLIANO, MW ;
WHITLOW, M ;
WOOD, JF ;
DODD, SW ;
HARDMAN, KD ;
ROLLENCE, ML ;
BRYAN, PN .
BIOCHEMISTRY, 1989, 28 (18) :7205-7213
[37]  
PERONA JJ, 1995, PROTEIN SCI, V4, P337
[38]  
RAWLINGS ND, 1994, METHOD ENZYMOL, V244, P19
[39]   H-1,C-13 AND N-15 NMR BACKBONE ASSIGNMENTS AND SECONDARY STRUCTURE OF THE 269-RESIDUE PROTEASE SUBTILISIN-309 FROM BACILLUS-LENTUS [J].
REMEROWSKI, ML ;
DOMKE, T ;
GROENEWEGEN, A ;
PEPERMANS, HAM ;
HILBERS, CW ;
VANDEVEN, FJM .
JOURNAL OF BIOMOLECULAR NMR, 1994, 4 (02) :257-278
[40]   Backbone dynamics of the 269-residue protease Savinase determined from N-15-NMR relaxation measurements [J].
Remerowski, ML ;
Pepermans, HAM ;
Hilbers, CW ;
VandeVen, FJM .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1996, 235 (03) :629-640