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首页> 外文期刊>Journal of bacteriology >Biochemical characterization of Escherichia coli temperature-sensitive dnaB mutants dnaB8, dnaB252, dnaB70, dnaB43, and dnaB454.
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Biochemical characterization of Escherichia coli temperature-sensitive dnaB mutants dnaB8, dnaB252, dnaB70, dnaB43, and dnaB454.

机译:大肠杆菌温度敏感性dnaB突变体dnaB8,dnaB252,dnaB70,dnaB43和dnaB454的生化特征。

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By use of PCR, the dnaB genes from the classical temperature-sensitive dnaB mutants PC8 (dnaB8), RS162 (dnaB252), CR34/454 (dnaB454), HfrH165/70 (dnaB70), and CR34/43 (dnaB43) were isolated. The mutant genes were sequenced, and single amino acid changes were identified in all cases. The mutant DnaB proteins were overexpressed in BL21 (DE3) cells by using the T7 based pET-11c expression vector system. The purified proteins were compared in regard to activities in the general priming reaction of primer RNA synthesis (with primase and single-stranded DNA [ssDNA] as the template), ATPase activity, and helicase activity at permissive (30 degrees C) and nonpermissive (42 degrees C) temperatures. The DnaB252 mutation is at amino acid 299 (Gly to Asp), and in all in vitro assays the DnaB252 protein was as active as the wild-type DnaB protein at both 30 and 42 degrees C. This region of the DnaB protein is believed to be involved in interaction with the DnaC protein. The dnaB8, dnaB454, and dnaB43 mutations, although independently isolated in different laboratories, were all at the same site, changing amino acid 130 from Ala to Val. This mutation is in the hinge region of the DnaB protein domains and probably induces a temperature-sensitive conformational change. These mutants have negligible primer RNA synthesis, ATPase activity, and helicase activity at the nonpermissive temperature. DnaB70 has a mutation at amino acid 242 (Met to Ile), which is close to the proposed ATP binding site. At 30 degrees C this mutant protein has a low level of ATPase activity (approximately 25% of that of the wild type) which is not affected by high temperature. By using a gel shift method that relies upon ssDNA substrates containing the photoaffinity analog 5-(N-(p-azidobenzoyl)-3-aminoallyl)-dUMP, all mutant proteins were shown to bind to ssDNA at both 30 and 42 degrees C. Their lack of other activities at 42 degrees C, therefore, is not due to loss of binding to the ssDNA substrate.
机译:通过使用PCR,从经典的温度敏感dnaB突变体PC8(dnaB8),RS162(dnaB252),CR34 / 454(dnaB454),HfrH165 / 70(dnaB70)和CR34 / 43(dnaB43)中分离了dnaB基因。对突变基因进行测序,并在所有情况下鉴定出单个氨基酸变化。通过使用基于T7的pET-11c表达载体系统,突变型DnaB蛋白在BL21(DE3)细胞中过表达。比较了纯化的蛋白质在引物RNA合成的一般引物反应中的活性(以引物酶和单链DNA [ssDNA]为模板),ATPase活性和解链酶活性(在许可(30摄氏度)和非许可( 42摄氏度)的温度。 DnaB252突变位于第299位氨基酸(从Gly到Asp),在所有体外分析中,DnaB252蛋白在30和42摄氏度下的活性都与野生型DnaB蛋白一样。参与与DnaC蛋白的相互作用。 dnaB8,dnaB454和dnaB43突变虽然在不同实验室中独立分离,但都位于同一位点,将氨基酸130从Ala更改为Val。此突变位于DnaB蛋白结构域的铰链区,可能诱导温度敏感的构象变化。这些突变体在非容许温度下具有可忽略的引物RNA合成,ATPase活性和解旋酶活性。 DnaB70在第242位氨基酸处突变(与Ile相遇),该突变接近拟议的ATP结合位点。在30摄氏度时,此突变蛋白的ATPase活性水平较低(约为野生型的25%),不受高温的影响。通过使用依赖于包含光亲和性类似物5-(N-(对叠氮苯甲酰基)-3-氨基烯丙基)-dUMP的ssDNA底物的凝胶迁移方法,所有突变蛋白均在30和42摄氏度下均与ssDNA结合。因此,它们在42摄氏度下缺乏其他活性,并不是由于失去了与ssDNA底物的结合力。

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