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突变型大肠杆菌色氨酸合成酶α亚基的相对活性和稳定性

Relative activities and stabilities of mutant Escherichia coli tryptophan synthase alpha subunits.

作者信息

Lim W K, Shin H J, Milton D L, Hardman J K

机构信息

Department of Biology, University of Alabama, Tuscaloosa 35487.

出版信息

J Bacteriol. 1991 Mar;173(6):1886-93. doi: 10.1128/jb.173.6.1886-1893.1991.

Abstract

In vitro mutagenesis of the Escherichia coli trpA gene has yielded 66 mutant tryptophan synthase alpha subunits containing single amino acid substitutions at 49 different residue sites and 29 double and triple amino acid substitutions at 16 additional sites, all within the first 121 residues of the protein. The 66 singly altered mutant alpha subunits encoded from overexpression vectors have been examined for their ability to support growth in trpA mutant host strains and for their enzymatic and stability properties in crude extracts. With the exception of mutant alpha subunits altered at catalytic residue sites Glu-49 and Asp-60, all support growth; this includes those (48 of 66) that have no enzymatic defects and those (18 of 66) that do. The majority of the enzymatically defective mutant alpha subunits have decreased capacities for substrate (indole-3-glycerol phosphate) utilization, typical of the early trpA missense mutants isolated by in vivo selection methods. These defects vary in severity from complete loss of activity for mutant alpha subunits altered at residue positions 49 and 60 to those, altered elsewhere, that are partially (up to 40 to 50%) defective. The complete inactivation of the proteins altered at the two catalytic residue sites suggest that, as found via in vitro site-specific mutagenesis of the Salmonella typhimurium tryptophan synthetase alpha subunit, both residues probably also participate in a push-pull general acid-base catalysis of indole-3-glycerol phosphate breakdown for the E. coli enzyme as well. Other classes of mutant alpha subunits include some novel types that are defective in their functional interaction with the other tryptophan synthetase component, the beta 2 subunit. Also among the mutant alpha subunits, 19 were found altered at one or another of the 34 conserved residue sites in this portion of the alpha polypeptide sequence; surprisingly, 10 of these have wild-type enzymatic activity, and 16 of these can satisfy growth requirements of a trpA mutant host. Heat stability and potential folding-rate alterations are found in both enzymatically active and defective mutant alpha subunits. Tyr-4. Pro-28, Ser-33, Gly-44, Asp-46, Arg-89, Pro-96, and Cys-118 may be important for these properties, especially for folding. Two regions, one near Thr-24 and another near Met-101, have been also tentatively identified as important for increasing stability.

摘要

对大肠杆菌trpA基因进行体外诱变,已产生66个突变型色氨酸合成酶α亚基,这些亚基在49个不同的残基位点含有单个氨基酸替换,在另外16个位点含有29个双氨基酸和三氨基酸替换,所有这些替换均位于该蛋白质的前121个残基内。已检测了从过表达载体编码的66个单突变的α亚基,以评估它们在trpA突变宿主菌株中支持生长的能力以及它们在粗提物中的酶活性和稳定性。除了在催化残基位点Glu-49和Asp-60处发生改变的突变α亚基外,所有其他亚基均支持生长;这包括那些没有酶缺陷的亚基(66个中的48个)和那些有酶缺陷的亚基(66个中的18个)。大多数有酶缺陷的突变α亚基利用底物(吲哚-3-甘油磷酸)的能力下降,这是通过体内选择方法分离的早期trpA错义突变体的典型特征。这些缺陷的严重程度各不相同,从在残基位置49和60处发生改变的突变α亚基完全丧失活性到在其他位置发生改变的部分缺陷(高达40%至50%)的亚基。在两个催化残基位点发生改变的蛋白质完全失活表明,正如通过鼠伤寒沙门氏菌色氨酸合成酶α亚基的体外位点特异性诱变所发现的那样,这两个残基可能也参与了大肠杆菌酶对吲哚-3-甘油磷酸分解的推挽式一般酸碱催化。其他类型的突变α亚基包括一些新型亚基,它们在与另一个色氨酸合成酶组分β2亚基的功能相互作用方面存在缺陷。在突变α亚基中,还发现有19个在α多肽序列的这一部分的34个保守残基位点中的一个或另一个位点发生了改变;令人惊讶的是,其中10个具有野生型酶活性,其中16个可以满足trpA突变宿主的生长需求。在有酶活性和有缺陷的突变α亚基中均发现了热稳定性和潜在的折叠速率改变。Tyr-4、Pro-28、Ser-33、Gly-44、Asp-46、Arg-89、Pro-96和Cys-118可能对这些特性很重要,尤其是对折叠。还初步确定了两个区域,一个靠近Thr-24,另一个靠近Met-101,对提高稳定性很重要。

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