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The Truncated Form of the Bacterial Heat Shock Protein ClpB/HSP100 Contributes to Development of Thermotolerance in the Cyanobacterium Synechococcus sp. Strain PCC 7942

机译:细菌热激蛋白ClpB / HSP100的截短形式有助于蓝藻Synechococcus sp。中耐热性的发展。应变PCC 7942

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摘要

ClpB is a highly conserved heat shock protein that is essential for thermotolerance in bacteria and eukaryotes. One distinctive feature of all bacterial clpB genes is the dual translation of a truncated 79-kDa form (ClpB-79) in addition to the full-length 93-kDa protein (ClpB-93). To investigate the currently unknown function of ClpB-79, we have examined the ability of the two different-sized ClpB homologues from the cyanobacterium Synechococcus sp. strain PCC 7942 to confer thermotolerance. We show that the ClpB-79 form has the same capacity as ClpB-93 to confer thermotolerance and that the ClpB-79 protein contributes ca. one-third of the total thermotolerance developed in wild-type Synechococcus, the first in vivo demonstration of a functional role for ClpB-79 in bacteria.
机译:ClpB是高度保守的热激蛋白,对于细菌和真核生物的耐热性至关重要。所有细菌clpB基因的一个显着特征是除全长93-kDa蛋白(ClpB-93)之外,还有截断的79-kDa形式(ClpB-79)的双重翻译。为了研究ClpB-79目前未知的功能,我们检查了来自蓝细菌Synchococcus sp。的两个不同大小的ClpB同源物的能力。株PCC 7942赋予耐热性。我们显示,ClpB-79形式具有与ClpB-93相同的能力,可赋予耐热性,并且ClpB-79蛋白质贡献约。在野生型Synechococcus中发展了总耐热性的三分之一,这是ClpB-79在细菌中的功能性作用的首次体内证明。

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