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低温诱导的抗冻性、蛋白质磷酸化及基因表达变化(钙作用的证据)

Cold-Induced Changes in Freezing Tolerance, Protein Phosphorylation, and Gene Expression (Evidence for a Role of Calcium).

作者信息

Monroy A. F., Sarhan F., Dhindsa R. S.

机构信息

Department of Biology, McGill University, 1205 Avenue Docteur Penfield, Montreal, Quebec H3A 1B1, Canada (A.F.M., R.S.D.).

出版信息

Plant Physiol. 1993 Aug;102(4):1227-1235. doi: 10.1104/pp.102.4.1227.

Abstract

The role of Ca2+ in cold-induced changes in protein phosphorylation, gene expression, and development of freezing tolerance has been studied in cell-suspension cultures of a freezing-tolerant cultivar of alfalfa (Medicago sativa spp. falcata cv Anik). Chemical treatments to block Ca2+ channels, antagonize calmodulin action, or inhibit protein kinases markedly inhibited the cellular capacity to develop cold-induced freezing tolerance but had little effect on cell viability. An analysis of phosphoprotein profile by two-dimensional polyacrylamide gel electrophoresis revealed that at low temperature the relative level of phosphorylation of several proteins increased, whereas that of several others decreased. When cold acclimation was carried out in the presence of N-(6-aminohexyl)-5-chloro-1-naphthalene-sulfonamide hydrochloride, an antagonist of calmodulin and Ca2+-dependent protein kinases, or the Ca2+ channel blocker La3+, the cold-induced changes in protein phosphorylation were strongly inhibited, cells lost their capacity to develop freezing tolerance, and accumulation of transcripts of cold acclimation-specific genes was substantially reduced. An inhibitor of protein kinases, 1-(5-isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride, had less pronounced effects on the cold-induced protein phosphorylation and caused only a partial inhibition of the cold-induced development of freezing tolerance and accumulation of the transcripts. The level of phosphorylation of one protein, of about 15 kD, increased more than 10-fold at low temperature and showed a strong positive correlation with cold-induced freezing tolerance and gene expression even when the latter were altered with various chemical treatments. These results suggest that Ca2+ and protein phosphorylation, or perhaps a coupling of the two, play an important role during the acquisition of freezing tolerance during cold acclimation.

摘要

在苜蓿(Medicago sativa spp. falcata cv Anik)的一个耐冻品种的细胞悬浮培养物中,研究了Ca2+在冷诱导的蛋白质磷酸化、基因表达及耐冻性形成中的作用。阻断Ca2+通道、拮抗钙调蛋白作用或抑制蛋白激酶的化学处理显著抑制了细胞形成冷诱导耐冻性的能力,但对细胞活力影响很小。通过二维聚丙烯酰胺凝胶电泳分析磷蛋白图谱发现,在低温下,几种蛋白质的磷酸化相对水平增加,而其他几种则下降。当在存在钙调蛋白和Ca2+依赖性蛋白激酶的拮抗剂N-(6-氨基己基)-5-氯-1-萘磺酰胺盐酸盐或Ca2+通道阻滞剂La3+的情况下进行冷驯化时,冷诱导的蛋白质磷酸化变化受到强烈抑制,细胞失去形成耐冻性的能力,冷驯化特异性基因转录本的积累也大幅减少。蛋白激酶抑制剂1-(5-异喹啉磺酰基)-2-甲基哌嗪二盐酸盐对冷诱导的蛋白质磷酸化影响较小,仅部分抑制冷诱导的耐冻性形成和转录本积累。一种约15 kD的蛋白质的磷酸化水平在低温下增加了10倍以上,并且即使在通过各种化学处理改变后者的情况下,也与冷诱导的耐冻性和基因表达呈强正相关。这些结果表明,Ca2+和蛋白质磷酸化,或者两者的偶联,在冷驯化过程中获得耐冻性期间起重要作用。

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