Department of Plant Molecular Biology, University of Delhi South Campus, New Delhi 110021, India.
Biochem J. 2020 Mar 13;477(5):853-871. doi: 10.1042/BCJ20190339.
Calcium (Ca2+) signaling is a versatile signaling network in plant and employs very efficient signal decoders to transduce the encoded message. The CBL-CIPK module is one of the sensor-relay decoders that have probably evolved with the acclimatization of land plant. The CBLs are unique proteins with non-canonical Ca2+ sensing EF-hands, N-terminal localization motif and a C-terminal phosphorylation motif. The partner CIPKs are Ser/Thr kinases with kinase and regulatory domains. Phosphorylation plays a major role in the functioning of the module. As the module has a functional kinase to transduce signal, it employs phosphorylation as a preferred mode for modulation of targets as well as its interaction with CBL. We analyze the data on the substrate regulation by the module from the perspective of substrate phosphorylation. We have also predicted some of the probable sites in the identified substrates that may be the target of the CIPK mediated phosphorylation. In addition, phosphatases have been implicated in reversing the CIPK mediated phosphorylation of substrates. Therefore, we have also presented the role of phosphatases in the modulation of the CBL-CIPK and its targets. We present here an overview of the phosphoregulation mechanism of the CBL-CIPK module.
钙信号是植物中一种多功能的信号网络,它采用非常有效的信号解码器来转导编码信息。CBL-CIPK 模块是传感器中继解码器之一,可能是随着陆地植物的适应而进化而来的。CBL 是具有非典型 Ca2+感应 EF 手、N 端定位基序和 C 端磷酸化基序的独特蛋白。伴侣 CIPKs 是 Ser/Thr 激酶,具有激酶和调节结构域。磷酸化在模块的功能中起着主要作用。由于模块具有功能激酶来转导信号,因此它采用磷酸化作为调节靶标以及与 CBL 相互作用的首选模式。我们从底物磷酸化的角度分析了模块对底物调节的相关数据。我们还预测了已识别底物中可能是 CIPK 介导磷酸化的靶标的一些可能的位点。此外,磷酸酶已被牵连到逆转 CIPK 介导的底物磷酸化。因此,我们还介绍了磷酸酶在 CBL-CIPK 及其靶标的调节中的作用。我们在这里介绍了 CBL-CIPK 模块的磷酸化调节机制概述。