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Amino acid residues involved in cold adaptation of isocitrate lyase from a psychrophilic bacterium, Colwellia maris

机译:涉及来自嗜冷细菌Collwellia maris的异柠檬酸裂合酶的冷适应的氨基酸残基

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摘要

To investigate the mechanism of cold adaptation of isocitrate lyase (ICL; EC 4.1.3.1) from the psychrophilic bacterium Colwellia maris, Gln207 and Gln217 of this enzyme were substituted by His and Lys, respectively, by site-directed mutagenesis. His184 and Lys194 of ICL from Escherichia coli, corresponding to the two Gln residues of C. maris ICL, are highly conserved in the ICLs of many organisms and are known to be essential for catalytic function. The mutated ICLs (Cm-Q207H and Cm-Q217K, respectively) and wild-type enzymes of C. maris and E. coli (Cm-WT and Ec-WT) with His-tagged peptides were overexpressed in E. coli cells and purified to homogeneity. Thermolabile Cm-WT and mutated ICLs were susceptible to digestion with trypsin, while relatively thermostable Ec-WT was resistant to trypsin digestion, suggesting that the thermostability and resistance to tryptic digestion of the ICLs are related. Cm-Q207H and Cm-Q217K showed specific activities similar to Cm-WT at temperatures between 30 °C and 40 °C, but their activities between 10 °C and 25 °C were decreased, indicating that the two Gln residues of the C. maris ICL play important roles in its cold adaptation. Phylogenetic analysis of ICLs from various organisms revealed that the C. maris ICL can be categorized in a novel group, subfamily 3, together with several eubacterial ICLs.
机译:为了研究来自嗜冷细菌马氏酵母的异柠檬酸裂合酶(ICL; EC 4.1.3.1)的冷适应机制,通过定点诱变分别用His和Lys取代了该酶的Gln207和Gln217。来自大肠杆菌的ICL的His184和Lys194,对应于马里氏梭菌ICL的两个Gln残基,在许多生物的ICL中高度保守,并且已知对于催化功能是必不可少的。在大肠杆菌细胞中过表达带有His标记肽的突变的ICL(分别为Cm-Q207H和Cm-Q217K)和海马和大肠杆菌的野生型酶(Cm-WT和Ec-WT),并进行纯化同质化。不耐热的Cm-WT和突变的ICL很容易被胰蛋白酶消化,而相对稳定的Ec-WT对胰蛋白酶的消化具有抵抗力,这表明ICL的热稳定性和对胰蛋白酶消化的抵抗力有关。 Cm-Q207H和Cm-Q217K在30°C至40°C的温度下显示出与Cm-WT相似的比活,但在10°C与25°C之间的活度却降低了,表明C的两个Gln残基。 maris ICL在其冷适应过程中起着重要作用。对来自各种生物的ICL的系统发育分析表明,马氏梭菌ICL可以与几个真细菌ICL一起归类为一个新的亚类3。

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