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Characterization of a temperature-sensitive DNA ligase from Escherichia coli

机译:来自大肠杆菌的温度敏感DNA连接酶的表征

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DNA ligases are essential enzymes in cells due to their ability to join DNA strand breaks formed during DNA replication. Several temperature-sensitive mutant strains of Escherichia coli, including strain GR501, have been described which can be complemented by functional DNA ligases. Here, it is shown that the ligA251 mutation in E. coli GR501 strain is a cytosine to thymine transition at base 43, which results in a substitution of leucine by phenylalanine at residue 15. The protein product of this gene (LigA251) is accumulated to a similar level at permissive and non-permissive temperatures. Compared to wild-type LigA, at 20?°C purified LigA251 has 20-fold lower ligation activity in vitro, and its activity is reduced further at 42?°C, resulting in 60-fold lower ligation activity than wild-type LigA. It is proposed that the mutation in LigA251 affects the structure of the N-terminal region of LigA. The resulting decrease in DNA ligase activity at the non-permissive temperature is likely to occur as the result of a conformational change that reduces the rate of adenylation of the ligase.
机译:由于它们在DNA复制期间形成的DNA链断裂的能力,DNA连接酶是细胞中的必需酶。已经描述了几种温度敏感的大肠杆菌,包括菌株GR501的突变菌株,其可以通过功能性DNA连接酶互补。这里,显示大肠杆菌GR501菌株中的LIGA251突变是碱基43的胸腺嘧啶转变的胞嘧啶,这导致残余物15的苯丙氨酸取代亮氨酸。该基因的蛋白质产物(LIGA251)累积为允许允许和非允许温度的类似水平。与野生型LIGA相比,在20?℃下纯化的LIGA251在体外具有20倍的降低连接活性,并且其活性在42℃下进一步降低,导致60倍的降低连接活性而不是野生型LIGA。提出,LIGA251中的突变影响LIGA的N-末端区域的结构。由于降低连接酶的腺苷酸率的构象变化,可能发生在非允许温度下的DNA连接酶活性的所得降低。

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