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来自四膜虫细胞的一种应激反应性丝裂原活化蛋白激酶相关激酶的分子克隆与表达

Molecular cloning and expression of a stress-responsive mitogen-activated protein kinase-related kinase from Tetrahymena cells.

作者信息

Nakashima S, Wang S, Hisamoto N, Sakai H, Andoh M, Matsumoto K, Nozawa Y

机构信息

Department of Biochemistry, Gifu University School of Medicine, Tsukasamachi-40, Gifu 500-8705, Japan.

出版信息

J Biol Chem. 1999 Apr 9;274(15):9976-83. doi: 10.1074/jbc.274.15.9976.

Abstract

To identify genes responsive to cold stress, we employed the differential display mRNA analysis technique to isolate a novel gene from Tetrahymena thermophila which encodes a protein kinase of 430 amino acids. A homolog of this kinase with 90% amino acid sequence identity was also found in T. pyriformis. Both kinases contain 11 subdomains typical of protein kinases. Sequence analysis revealed that the predicted amino acid sequences resemble those of mitogen-activated protein kinase (MAPK), especially p38 and stress-activated protein kinase which are known to be involved in various stress responses. However, it should be noted that the tyrosine residue in the normally conserved MAPK phosphorylation site (Thr-X-Tyr) is replaced by histidine (Thr226-Gly-His228) in this MAPK-related kinase (MRK). The recombinant MRK expressed in Escherichia coli phosphorylated myelin basic protein (MBP) and became autophosphorylated. However, the mutated recombinant protein in which Thr226 was replaced by Ala lost the ability to phosphorylate MBP, suggesting that Thr226 residue is essential for kinase activity. The MRK mRNA transcript in T. thermophila increased markedly upon temperature downshift from 35 to 15 degrees C (0.8 degrees C/min). Interestingly, osmotic shock either by sorbitol (100-200 mM) or NaCl (25-100 mM) also induced mRNA expression of the MRK in T. pyriformis. In addition, the activity of the kinase as determined by an immune complex kinase assay using MBP as a substrate was also induced by osmotic stress. This is the first demonstration of a MAPK-related kinase in the unicellular eukaryotic protozoan Tetrahymena that is induced by physical stresses such as cold temperature and osmolarity. The present results suggest that this MRK may function in the stress-signaling pathway in Tetrahymena cells.

摘要

为了鉴定对冷应激有反应的基因,我们采用差异显示mRNA分析技术从嗜热四膜虫中分离出一个新基因,该基因编码一种含有430个氨基酸的蛋白激酶。在梨形四膜虫中也发现了该激酶的一个同源物,其氨基酸序列同一性为90%。这两种激酶都含有蛋白激酶典型的11个亚结构域。序列分析表明,预测的氨基酸序列与丝裂原活化蛋白激酶(MAPK)相似,尤其是已知参与各种应激反应的p38和应激激活蛋白激酶。然而,应该注意的是,在这个与MAPK相关的激酶(MRK)中,正常保守的MAPK磷酸化位点(Thr-X-Tyr)中的酪氨酸残基被组氨酸(Thr226-Gly-His228)取代。在大肠杆菌中表达的重组MRK使髓鞘碱性蛋白(MBP)磷酸化并发生自身磷酸化。然而,将Thr226替换为Ala的突变重组蛋白失去了磷酸化MBP的能力,这表明Thr226残基对于激酶活性至关重要。当温度从35℃以0.8℃/分钟的速度降至15℃时,嗜热四膜虫中的MRK mRNA转录本显著增加。有趣的是,山梨醇(100 - 200 mM)或NaCl(25 - 100 mM)引起的渗透休克也诱导了梨形四膜虫中MRK的mRNA表达。此外,以MBP为底物通过免疫复合物激酶测定法测定的激酶活性也受到渗透应激的诱导。这是首次在单细胞真核原生动物四膜虫中证明一种与MAPK相关的激酶可被低温和渗透压等物理应激诱导。目前的结果表明,这种MRK可能在四膜虫细胞的应激信号通路中发挥作用。

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