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Central Roles and Regulatory Mechanisms of Dual-Specificity MAPK Phosphatases in Developmental and Stress Signaling

机译:双特异性MAPK磷酸酶在发育和应激信号中的核心作用和调控机制。

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摘要

Mitogen-Activated Protein Kinase (MAPK) cascades are conserved signaling modules that integrate multiple signaling pathways. One level of control on the activity of MAPKs is through their negative regulators, MAPK phosphatases (MKPs). Therefore, MKPs also play an integrative role for plants responding to diverse environmental stimulus; but the mechanism(s) by which these phosphatases contribute to specific signals remains largely unknown. In this review, we summarize recent advances in characterizing the biological functions of a sub-class of MKPs, dual-specificity phosphatases (DSPs), ranging from controlling plant growth and development to modulating stress adaptation. We also discuss putative regulatory mechanisms of DSP-type MKPs, which plants may use to control the correct level of responses at the right place and time. We highlight insights into potential regulation of cross-talk between different signaling pathways, facilitating the development of strategies for targeting such cross-talk and to help improve plant resistance against adverse environmental conditions without affecting the growth and development.
机译:丝裂原激活的蛋白激酶(MAPK)级联反应是保守的信号传导模块,整合了多种信号传导途径。对MAPK活性的一种控制水平是通过其负调节剂MAPK磷酸酶(MKP)。因此,MKPs还对植物响应多种环境刺激起着综合作用。但是这些磷酸酶促成特定信号的机制仍然未知。在这篇综述中,我们总结了表征MKPs亚型双特异性磷酸酶(DSPs)的生物学功能的最新进展,从控制植物的生长和发育到调节逆境适应。我们还讨论了DSP型MKP的推定调控机制,工厂可在适当的位置和时间使用该机制来控制正确的响应水平。我们着重介绍了不同信号通路之间潜在的串扰调控的见解,从而促进了针对此类串扰的策略的开发,并有助于提高植物对不利环境条件的抗性而又不影响其生长发育。

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