The effect of disulfide bond on the conformational stability and catalytic activity of beta-propeller phytase

被引:19
作者
Cheng, Chiwai
Wong, Kam-Bo
Lim, Boon L.
机构
[1] Univ Hong Kong, Dept Zool, Hong Kong, Hong Kong, Peoples R China
[2] Chinese Univ Hong Kong, Dept Biochem, Sha Tin, Hong Kong, Peoples R China
关键词
Bacillus; beta-propeller phytase; disulfide bond; phosphorus; phytate;
D O I
10.2174/092986607779816069
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
While beta-propeller phytases (BPPs) from Gram-positive bacteria do not carry disulfide bonding, their counterparts from Gram-negative bacteria contain cysteine residues that may form disulfide bonds. By molecular modeling, two amino acid residues of B subtilis 168 phytase (168PhyA), Ser-161 and Leu-212, were mutated to cysteine residues. Although the double cysteine mutant was secreted from B. subtilis at an expression level that was 3.5 times higher than that of the wild type, the biochemical and enzymatic properties were unaltered. In CD spectrometric analysis, both enzymes exhibited similar apparent melting temperatures and mid-points of transition under thermal and guanidine hydrochloride induced denaturation, respectively. In enzyme assays, the mutant phytase exhibited a poor refolding ability after thermal denaturation. We postulate that the disulfide bond in BPP sequences from Gram-negative bacteria is beneficial to their stability in the periplasmic compartment. In contrast, the lack of periplasmic space in Bacillus species and the fact that Bacillus BPPs are released extracellularly may render disulfide bonds unnecessary. This may explain why in evolution, BPPs in Bacillus species do not carry disulfide bonds.
引用
收藏
页码:175 / 183
页数:9
相关论文
共 26 条
[1]   IDENTIFICATION OF A PROTEIN REQUIRED FOR DISULFIDE BOND FORMATION INVIVO [J].
BARDWELL, JCA ;
MCGOVERN, K ;
BECKWITH, J .
CELL, 1991, 67 (03) :581-589
[2]   Functional analysis of paralogous thiol-disulfide oxidoreductases in Bacillus subtilis [J].
Bolhuis, A ;
Venema, G ;
Quax, WJ ;
Bron, S ;
van Dijl, JM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (35) :24531-24538
[3]   Beta-propeller phytases in the aquatic environment [J].
Cheng, CW ;
Lim, BL .
ARCHIVES OF MICROBIOLOGY, 2006, 185 (01) :1-13
[4]  
Ha NC, 2000, NAT STRUCT BIOL, V7, P147
[5]   Plasminogen Kanagawa-I, a novel missense mutation, is caused by the amino acid substitution G732R [J].
Higuchi, Y ;
Furihata, K ;
Ueno, I ;
Ishikawa, S ;
Okumura, N ;
Tozuka, M ;
Sakurai, N .
BRITISH JOURNAL OF HAEMATOLOGY, 1998, 103 (03) :867-870
[6]   Protein disulfide bond formation in prokaryotes [J].
Kadokura, H ;
Katzen, F ;
Beckwith, J .
ANNUAL REVIEW OF BIOCHEMISTRY, 2003, 72 :111-135
[7]  
Kerovuo J, 1998, APPL ENVIRON MICROB, V64, P2079
[8]   Extreme stabilization of a thermolysin-like protease by an engineered disulfide bond [J].
Mansfeld, J ;
Vriend, G ;
Dijkstra, BW ;
Veltman, OR ;
VandenBurg, B ;
Venema, G ;
UlbrichHofmann, R ;
Eijsink, VGH .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (17) :11152-11156
[9]  
MCPHERSON MJ, 1991, DIRECTED MUTAGENESIS
[10]   STRUCTURE-STABILITY RELATIONSHIP IN PROTEINS - FUNDAMENTAL TASKS AND STRATEGY FOR THE DEVELOPMENT OF STABILIZED ENZYME CATALYSTS FOR BIOTECHNOLOGY [J].
MOZHAEV, VV ;
BEREZIN, IV ;
MARTINEK, K .
CRC CRITICAL REVIEWS IN BIOCHEMISTRY, 1988, 23 (03) :235-281