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豌豆叶片中编码线粒体小分子热休克蛋白HSP22的mRNA的序列与表达

Sequence and expression of the mRNA encoding HSP22, the mitochondrial small heat-shock protein in pea leaves.

作者信息

Lenne C, Block M A, Garin J, Douce R

机构信息

Laboratoire de Physiologie Cellulaire Végétale (URA CNRS no. 576), Université Joseph Fourier, Grenoble, France.

出版信息

Biochem J. 1995 Nov 1;311 ( Pt 3)(Pt 3):805-13. doi: 10.1042/bj3110805.

Abstract

A 3 h treatment at 40 degrees C of pea (Pisum sativum var. Douce Provence) plants induces production and accumulation of a small heat-shock protein of 22 kDa apparent molecular mass, designated HSP22, in the matrix compartment of mitochondria [Lenne and Douce (1994) Plant Physiol. 105, 1255-1261]. We show here that the HSP22 precursor (i.e. the mature protein plus the transit peptide) has an apparent molecular mass of 26 kDa after in vitro translation of mRNA extracted from heat-stressed pea plants and immunodetection. We have isolated, cloned and sequenced the full-length cDNA encoding the precursor of the mitochondrial HSP22. An analysis of the amino acid sequence of the mitochondrial HSP22 reveals that this protein is a representative member of the low-molecular-mass heat shock protein (HSP) superfamily, exhibiting the specific consensus regions that are typical of the small HSPs. Most importantly, comparison of the mitochondrial HSP22 sequence with that of chloroplast small HSPs indicates that HSP22 does not contain the typical chloroplast consensus region III. We have also analysed the kinetics of HSP22 induction, and report results on the temporal expression of HSP22 at the transcriptional level. HSP22 mRNA was detected as soon as 10 min after the temperature was raised to a high temperature of 40 degrees C. Then the amount of HSP22 mRNA declined considerably even though pea plants were still submitted to the heat treatment. These results are discussed in light of the translation data previously published [Lenne and Douce (1994) Plant Physiol. 105, 1255-1261], particularly concerning the physiological behaviour of mitochondria when plants are heat-stressed. Furthermore, we have studied the dependence of HSP22 accumulation with temperature and demonstrate that the pea mitochondrial heat-shock response is only developed under extreme environmental growth conditions.

摘要

将豌豆(Pisum sativum var. Douce Provence)植株在40摄氏度下处理3小时,可诱导线粒体基质区室中产生并积累一种表观分子量为22 kDa的小热激蛋白,命名为HSP22 [Lenne和Douce(1994年),《植物生理学》105卷,1255 - 1261页]。我们在此表明,从热胁迫豌豆植株中提取的mRNA进行体外翻译并免疫检测后,HSP22前体(即成熟蛋白加上转运肽)的表观分子量为26 kDa。我们已经分离、克隆并测序了编码线粒体HSP22前体的全长cDNA。对线粒体HSP22氨基酸序列的分析表明,该蛋白是低分子量热激蛋白(HSP)超家族的代表性成员,具有小HSP特有的特定共有区域。最重要的是,将线粒体HSP22序列与叶绿体小HSP序列进行比较表明HSP22不包含典型的叶绿体共有区域III。我们还分析了HSP22诱导的动力学,并报告了HSP22在转录水平的时间表达结果。温度升至40摄氏度高温后10分钟就检测到了HSP22 mRNA。然后,即使豌豆植株仍处于热处理状态,HSP22 mRNA的量也大幅下降。根据先前发表的翻译数据[Lenne和Douce(1994年),《植物生理学》105卷,1255 - 1261页],特别是关于植物热胁迫时线粒体的生理行为,对这些结果进行了讨论。此外,我们研究了HSP22积累对温度的依赖性,并证明豌豆线粒体热激反应仅在极端环境生长条件下才会出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18b8/1136073/4e0cd01a18e7/biochemj00052-0105-a.jpg

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