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盐生植物盐芥中的冷休克结构域蛋白:基因结构及对低温的差异响应

[Cold shock domain proteins in the extremophyte Thellungiella salsuginea (salt cress): gene structure and differential response to cold].

作者信息

Taranov V V, Berdnikova M V, Nosov A V, Galkin A V, Babakov A V

出版信息

Mol Biol (Mosk). 2010 Sep-Oct;44(5):889-97.

PMID:21090243
Abstract

Four genes encoding cold shock domain (CSD) proteins have been identified in salt cress [Thellungiella salsuginea (halophila), an extremophyte currently recognized as a promising model for studying stress tolerance]. The deduced proteins prove highly homologous to those of Arabidopsis thaliana (up to 95% identity) and are accordingly enumerated TsCSDP1-TsCSDP4; after the N-proximal conserved CSD, they have respectively 6, 2, 7, and 2 zinc finger motifs evenly spaced by Gly-rich stretches. Much lower similarity (approximately 45%) is observed in the regions upstream of TATA-box promoters of TsCSDP1 vs. AtCSP1, with numerous distinctions in the sets of identifiable cis-regulatory elements. Plasmid expression of sCSDP1 rescues a cold-sensitive cup-lacking mutant of Escherichia coli, confirming that the protein is functional. In leaves of salt cress plants under normal conditions, the mRNA levels for the four TsCSDPs relate as 10: 27: 1: 31. Chilling to 4 degrees C markedly alters the gene expression; the 4-day dynamics are different for all four genes and quite dissimilar from those reported for their Arabidopsis homologues under comparable conditions. Thus, the much greater cold hardiness of Thellungiella vs. Arabidopsis cannot be explained by structural distinctions of its CSDPs, but rather may be due to expedient regulation of their expression at low temperature.

摘要

在盐芥(Thellungiella salsuginea (halophila),一种目前被认为是研究胁迫耐受性的有前景的模式植物的极端植物)中已鉴定出四个编码冷休克结构域(CSD)蛋白的基因。推导的蛋白质与拟南芥的蛋白质高度同源(同一性高达95%),因此被命名为TsCSDP1 - TsCSDP4;在N端保守的CSD之后,它们分别有6、2、7和2个锌指基序,由富含甘氨酸的片段均匀隔开。TsCSDP1的TATA框启动子上游区域与AtCSP1的相似性要低得多(约45%),在可识别的顺式调控元件组中有许多差异。sCSDP1的质粒表达拯救了大肠杆菌的一个冷敏感的无杯突变体,证实该蛋白具有功能。在正常条件下盐芥植物的叶片中,四个TsCSDPs的mRNA水平之比为10:27:1:31。冷却至4摄氏度显著改变基因表达;这四个基因的4天动态变化各不相同,且与在类似条件下其拟南芥同源物的报道情况非常不同。因此,盐芥比拟南芥更强的抗寒性不能用其CSDPs的结构差异来解释,而可能是由于它们在低温下的表达调控得当。

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引用本文的文献

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RNA melting and RNA chaperone activities of plant cold shock domain proteins are not correlated.植物冷激域蛋白的 RNA 解链和 RNA 伴侣活性不相关。
RNA Biol. 2018;15(8):1040-1046. doi: 10.1080/15476286.2018.1506681. Epub 2018 Aug 21.
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High DNA melting activity of extremophyte cold shock domain proteins EsCSDP1 and EsCSDP3.极端微生物冷休克结构域蛋白EsCSDP1和EsCSDP3具有高DNA解链活性。
Biochem Biophys Rep. 2016 Feb 9;5:502-508. doi: 10.1016/j.bbrep.2016.02.004. eCollection 2016 Mar.