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Regulation of Nicotiana tabacum osmotic stress-activated protein kinase and its cellular partner GAPDH by nitric oxide in response to salinity

机译:一氧化氮对盐胁迫下烟草渗透胁迫激活蛋白激酶及其细胞伴侣GapDH的调节作用

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摘要

Several studies focused on elucidating the mechanism of nitric oxide (NO) signalling in plant cells highlighted that its biological effects are partly mediated by protein kinases. Identity of these kinases and details of how NO modulates their activities, however, remain poorly investigated. Here, we have attempted to clarify the mechanisms underlying NO action in regulation of Nicotiana tabacum osmotic stress-activated protein kinase (NtOSAK), a member of the SNF1-related protein kinase 2 family. We found that in tobacco BY-2 cells exposed to salt stress, NtOSAK is rapidly activated partly through a NO-dependent process. This activation, as well as the one observed following treatment of BY-2 cells with the NO donor DEA/NO, involved the phosphorylation of two residues located in the kinase activation loop, one being identified as Ser-158. Our results indicate that NtOSAK does not undergo the direct chemical modifications of its Cys residues by S-nitrosylation. Using a co-immunoprecipitation-based strategy, we identified several proteins present in immunocomplex with NtOSAK in salt-treated cells including the glycolytic enzyme glyceraldehyde 3-phosphate dehydrogenase (GAPDH). Our results indicate that NtOSAK directly interacts with GAPDH in planta. Furthermore, in response to salt, GAPDH showed a transient increase of its S-nitrosylation level which was correlated with the time course of NtOSAK activation. However, GADPH S-nitrosylation did not influence its interaction with NtOSAK and did not impact the activity of the protein kinase. Taken together, the results support the hypothesis that NtOSAK and GAPDH form a cellular complex and that both proteins are regulated directly or indirectly by NO.
机译:专注于阐明植物细胞中一氧化氮(NO)信号传导机制的几项研究强调,其生物学效应部分由蛋白激酶介导。这些激酶的身份和NO如何调节其活性的细节,但是,仍然进行调查不足。在这里,我们试图阐明NO调控烟叶渗透压激活蛋白激酶(NtOSAK),SNF1相关蛋白激酶2家族成员的作用的潜在机制。我们发现在暴露于盐胁迫的烟草BY-2细胞中,NtOSAK被部分通过NO依赖性过程快速激活。该活化作用以及在用NO供体DEA / NO处理BY-2细胞后观察到的活化作用,涉及激酶活化环中两个残基的磷酸化,一个残基被鉴定为Ser-158。我们的结果表明,NtOSAK不会通过S-亚硝基化对其Cys残基进行直接化学修饰。使用基于共免疫沉淀的策略,我们在盐处理的细胞中鉴定了与NtOSAK免疫复合物中存在的几种蛋白质,包括糖酵解酶甘油醛3-磷酸脱氢酶(GAPDH)。我们的结果表明,NtOSAK与植物中的GAPDH直接相互作用。此外,响应于盐,GAPDH显示其S-亚硝基化水平的瞬时增加,这与NtOSAK活化的时间过程相关。但是,GADPH S-亚硝基化不会影响其与NtOSAK的相互作用,也不会影响蛋白激酶的活性。两者合计,结果支持以下假设:NtOSAK和GAPDH形成细胞复合物,并且两种蛋白质均受NO直接或间接调节。

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    Dobrowolska Grażyna;

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  • 年度 2010
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