首页> 美国卫生研究院文献>Journal of Bacteriology >Cloning, sequencing, and molecular analysis of the dnaK locus from Bacillus subtilis.
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Cloning, sequencing, and molecular analysis of the dnaK locus from Bacillus subtilis.

机译:枯草芽孢杆菌dnaK基因座的克隆,测序和分子分析。

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摘要

By using an internal part of the dnaK gene from Bacillus megaterium as a probe, a 5.2-kb HindIII fragment of chromosomal DNA of Bacillus subtilis was cloned. Downstream sequences were isolated by in vivo chromosome walking. Sequencing of 5,085 bp revealed four open reading frames in the order orf39-grpE-dnaK-dnaJ. orf39 encodes a 39-kDa polypeptide of unknown biological function with no noticeable homology to any other protein within the data bases. Alignment of the GrpE protein with those of three other bacterial species revealed a low overall homology, but a higher homology restricted to two regions which might be involved in interactions with other proteins. Alignment of the DnaK protein with six bacterial DnaK polypeptides revealed that a contiguous region of 24 amino acids is absent from the DnaK proteins of all known gram-positive species. Primer extension studies revealed three potential transcription start sites, two preceding orf39 (S1 and S2) and a third one in front of grpE (S3). S2 and S3 were activated at a high temperature. Northern (RNA) analysis led to the detection of three mRNA species of 4.9, 2.6, and 1.5 kb. RNA dot blot experiments revealed an at-least-fivefold increase in the amount of specific mRNA from 0 to 5 min postinduction and then a rapid decrease. A transcriptional fusion between dnaK and the amyL reporter gene exhibited a slight increase in alpha-amylase activity after heat induction. A 9-bp inverted repeat was detected in front of the coding region of orf39. This inverted repeat is present in a number of other heat shock operons in other microorganisms ranging from cyanobacteria to mycobacteria. The biological property of this inverted repeat as a putative key element in the induction of heat shock genes is discussed. The dnaK locus was mapped at about 223 degrees on the B. subtilis genetic map.
机译:通过使用巨大芽孢杆菌的dnaK基因的内部作为探针,克隆了枯草芽孢杆菌染色体DNA的5.2kb HindIII片段。通过体内染色体行走分离下游序列。 5,085 bp的测序揭示了四个开放阅读框,顺序为orf39-grpE-dnaK-dnaJ。 orf39编码一种生物学功能未知的39 kDa多肽,与数据库中的任何其他蛋白质均无明显同源性。 GrpE蛋白与其他三个细菌物种的比对显示出较低的总体同源性,但较高的同源性仅限于可能与其他蛋白质相互作用的两个区域。 DnaK蛋白与6个细菌DnaK多肽的比对表明,所有已知的革兰氏阳性菌种的DnaK蛋白都缺少24个氨基酸的连续区域。引物延伸研究显示了三个潜在的转录起始位点,两个在前的orf39(S1和S2)和在grpE前面的第三个(S3)。 S2和S3在高温下激活。 Northern(RNA)分析导致检测到4.9、2.6和1.5 kb的三种mRNA。 RNA点印迹实验显示,诱导后0至5分钟,特异性mRNA的量至少增加了五倍,然后迅速减少。 dnaK和amyL报告基因之间的转录融合在热诱导后显示出α-淀粉酶活性的轻微增加。在orf39的编码区前面检测到9 bp的反向重复序列。该反向重复存在于从蓝细菌到分枝杆菌的其他微生物的许多其他热激操纵子中。讨论了该反向重复序列作为热休克基因诱导中假定的关键元件的生物学特性。 dnaK基因座在枯草芽孢杆菌遗传图谱上大约223度作图。

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