Kirino H, Aoki M, Aoshima M, Hayashi Y, Ohba M, Yamagishi A, Wakagi T, Oshima T
Department of Life Science, Tokyo Institute of Technology, Yokohama, Japan.
Eur J Biochem. 1994 Feb 15;220(1):275-81. doi: 10.1111/j.1432-1033.1994.tb18623.x.
We cloned and sequenced the leuB gene encoding 3-isopropylmalate dehydrogenase from Escherichia coli K-12 (JM103). Errors (33 residues) were found and corrected in the sequence previously reported for the leuB gene of Thermus thermophilus. The three-dimensional structure of the thermophile enzyme and the amino acid sequence comparison suggested that a part of the high stability of the T. thermophilus enzyme is conferred by increased hydrophobic interaction at the subunit-subunit interface. Two residues at the interface of the T. thermophilus enzyme, Leu246 and Val249, are substituted with less hydrophobic residues, Glu and Met, respectively, in the E. coli enzyme, whereas other residues in this region are highly conserved. The mutated T. thermophilus enzyme [L246E, V249M]IPMDH had reduced stability to heat. Two residues of the E. coli dehydrogenase, Glu256 and Met259, were replaced with the corresponding residues from the thermophile sequence. The resulted mutant enzyme was more resistant to heat than the wild-type enzyme.
我们克隆并测序了来自大肠杆菌K-12(JM103)的编码3-异丙基苹果酸脱氢酶的leuB基因。在先前报道的嗜热栖热菌leuB基因序列中发现并纠正了错误(33个残基)。嗜热菌酶的三维结构和氨基酸序列比较表明,嗜热栖热菌酶的部分高稳定性是由亚基-亚基界面处增加的疏水相互作用赋予的。嗜热栖热菌酶界面处的两个残基Leu246和Val249,在大肠杆菌酶中分别被疏水性较低的残基Glu和Met取代,而该区域的其他残基高度保守。突变的嗜热栖热菌酶[L246E,V249M]IPMDH对热的稳定性降低。将大肠杆菌脱氢酶的两个残基Glu256和Met259替换为嗜热菌序列中的相应残基。所得突变酶比野生型酶更耐热。