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A new Escherichia coli heat shock gene, htrC, whose product is essential for viability only at high temperatures.

机译:一个新的大肠杆菌热休克基因htrC,其产物对于仅在高温下的生存力至关重要。

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摘要

We identified and characterized a new Escherichia coli gene, htrC. Inactivation of the htrC gene results in the inability to form colonies at 42 degrees C. An identical bacterial phenotype is found whether the htrC gene is inactivated either by Tn5 insertions or by a deletion spanning the entire gene. The htrC gene has been localized at 90 min, immediately downstream of the rpoC gene, and has been previously sequenced. It codes for a basic polypeptide with an Mr of 21,130. The htrC gene is under heat shock regulation, since it is transcribed actively only in bacteria possessing functional sigma 32. Inactivation of htrC results in (i) bacterial filamentation at intermediate temperatures, (ii) cell lysis at temperatures above 42 degrees C, (iii) overproduction of sigma 32-dependent heat shock proteins at all temperatures, (iv) overproduction of a few additional polypeptides, (v) underproduction of many polypeptides, and (vi) an overall defect in cellular proteolysis as judged by the reduced rate of puromycyl polypeptide degradation. In addition, the presence of an htrC mutation eliminates the UV sensitivity normally exhibited by lon mutant bacteria.
机译:我们鉴定并鉴定了新的大肠杆菌基因htrC。 htrC基因的失活导致无法在42摄氏度下形成菌落。无论是通过Tn5插入还是通过整个基因的缺失使htrC基因失活,都发现了相同的细菌表型。 htrC基因已定位在90分钟处,紧接rpoC基因的下游,并已预先测序。它编码Mr为21,130的基本多肽。 htrC基因处于热激调节之下,因为它仅在具有功能sigma 32的细菌中主动转录。htrC的失活导致(i)在中间温度下细菌丝化,(ii)在高于42摄氏度的温度下细胞裂解,(iii )在所有温度下过度产生sigma 32依赖的热激蛋白,(iv)过量生产一些其他多肽,(v)许多多肽生产不足,以及(vi)由嘌呤霉素降低的速率判断的细胞蛋白水解的整体缺陷多肽降解。另外,htrC突变的存在消除了lon突变细菌通常表现出的紫外线敏感性。

著录项

  • 作者

    Raina, S; Georgopoulos, C;

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  • 年度 1990
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  • 原文格式 PDF
  • 正文语种 en
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