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热应激和恢复期间细胞质低分子量热休克蛋白保守家族的表达。

Expression of a Conserved Family of Cytoplasmic Low Molecular Weight Heat Shock Proteins during Heat Stress and Recovery.

机构信息

Department of Molecular and Cellular Biology, University of Arizona, Tucson, Arizona, 85721.

出版信息

Plant Physiol. 1991 Aug;96(4):1038-47. doi: 10.1104/pp.96.4.1038.

Abstract

Plants synthesize several families of low molecular weight (LMW) heat shock proteins (HSPs) in response to elevated temperatures. We have characterized two cDNAs, HSP18.1 and HSP17.9, that encode members of the class I family of LMW HSPs from pea (Pisum sativum). In addition, we investigated the expression of these HSPs at the mRNA and protein levels during heat stress and recovery. HSP18.1 and HSP17.9 are 82.1% identical at the amino acid level and are 80.8 to 92.9% identical to class I LMW HSPs of other angiosperms. Heat stress experiments were performed using intact seedlings subjected to a gradual temperature increase and held at a maximum temperature of 30 to 42 degrees Celsius for 4 hours. HSP18.1 and HSP17.9 mRNA levels peaked at the beginning of the maximum temperature period and declined rapidly after the stress period. Antiserum against a HSP18.1 fusion protein recognized both HSP18.1 and HSP17.9 but not members of other families of LMW HSPs. The accumulation of HSP18.1-immunodetected protein was proportional to the severity of the heat stress, and the protein had a half-life of 37.7 +/- 8 hours. The long half-life of these proteins supports the hypothesis that they are involved in establishing thermotolerance.

摘要

植物会合成几种低分子量(LMW)热休克蛋白(HSPs)以应对高温。我们已经鉴定了两个 cDNA,HSP18.1 和 HSP17.9,它们编码来自豌豆(Pisum sativum)的 I 类 LMW HSPs 的成员。此外,我们还研究了这些 HSPs 在热应激和恢复过程中在 mRNA 和蛋白质水平上的表达。HSP18.1 和 HSP17.9 在氨基酸水平上的同源性为 82.1%,与其他被子植物的 I 类 LMW HSPs 的同源性为 80.8%至 92.9%。使用完整的幼苗进行热应激实验,逐渐升高温度,在 30 至 42 摄氏度的最高温度下保持 4 小时。HSP18.1 和 HSP17.9 的 mRNA 水平在最高温度期开始时达到峰值,并在应激期后迅速下降。针对 HSP18.1 融合蛋白的抗血清可识别 HSP18.1 和 HSP17.9,但不识别其他 LMW HSP 家族的成员。HSP18.1-免疫检测蛋白的积累与热应激的严重程度成正比,该蛋白的半衰期为 37.7 +/- 8 小时。这些蛋白质的长半衰期支持了它们参与建立耐热性的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c18b/1080890/f41656e82ce6/plntphys00695-0050-a.jpg

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