首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Disruption of the gene for hsp30 an alpha-crystallin-related heat shock protein of Neurospora crassa causes defects in thermotolerance.
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Disruption of the gene for hsp30 an alpha-crystallin-related heat shock protein of Neurospora crassa causes defects in thermotolerance.

机译:hsp30基因的破坏hsp30是一种与Neurospora crassa的α-晶状体蛋白相关的热休克蛋白会引起耐热性的缺陷。

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摘要

The alpha-crystallin-related heat shock proteins are produced by all eukaryotes, but the role of these proteins in thermoprotection remains unclear. To investigate the function of one of these proteins, we disrupted expression of the single-copy hsp30 gene of Neurospora crassa, using repeat-induced point mutagenesis, and we generated and characterized mutant strains that were deficient in hsp30 synthesis. These strains could grow at high temperature and they acquired thermotolerance from a heat shock. However, the hsp30-defective strains proved to be extremely sensitive to the combined stresses of high temperature and carbohydrate limitation, enforced by the addition of a nonmetabolizable glucose analogue. Under these conditions, their survival was reduced by 90% compared with wild-type cells. This sensitive phenotype was reversed by reintroduction of a functional hsp30 gene into the mutant strains. The mutant cells contained mitochondria from which a 22-kDa protein was readily extracted with detergents, in contrast to its retention by the mitochondria of wild-type cells. Antibodies against hsp30 coimmunoprecipitated a protein also of approximately 22 kDa from wild-type cells. Results of this study suggest that hsp30 may be important for efficient carbohydrate utilization during high temperature stress and that it may interact with other mitochondrial membrane proteins and function as a protein chaperone.
机译:所有真核生物均产生与α-晶状体蛋白相关的热激蛋白,但这些蛋白在热保护中的作用仍不清楚。为了研究这些蛋白质之一的功能,我们使用重复诱导点诱变破坏了神经孢单胞菌的单拷贝hsp30基因的表达,并产生并鉴定了hsp30合成缺陷的突变菌株。这些菌株可能在高温下生长,并且因热冲击而具有耐热性。然而,hsp30缺陷菌株被证明对高温和碳水化合物限制的综合压力极为敏感,这是由于添加了不可代谢的葡萄糖类似物而引起的。在这些条件下,与野生型细胞相比,它们的存活率降低了90%。通过将功能性hsp30基因重新引入突变株,可以逆转这种敏感的表型。突变细胞含有线粒体,与野生型细胞的线粒体相比,其容易用去污剂从中提取22 kDa的蛋白质。针对hsp30的抗体从野生型细胞中共免疫沉淀了约22 kDa的蛋白质。这项研究的结果表明,hsp30对于高温胁迫下有效利用碳水化合物可能很重要,并且它可能与其他线粒体膜蛋白相互作用并起蛋白伴侣的作用。

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