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Calcium-Dependent Protein Kinase in Ginger Binds with Importin-α through Its Junction Domain for Nuclear Localization and Further Interacts with NAC Transcription Factor

机译:生姜中的钙依赖性蛋白激酶通过其结域与Importin-α结合以进行核定位并与NAC转录因子进一步相互作用。

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摘要

Calcium-dependent protein kinases (CDPKs) are important sensors of Ca2+ elevations in plant cells regulating the gene expression linked with various cellular processes like stress response, growth and development, metabolism, and cytoskeleton dynamics. Ginger is an extensively used spice due to its unique flavor and immense medicinal value. The two major threats that interfere with the large scale production of ginger are the salinity and drought stress. ZoCDPK1 (Zingiber officinale Calcium-dependent protein kinase 1) is a salinity and drought-inducible CDPK gene isolated from ginger and undergoes dynamic subcellular localization during stress conditions. ZoCDPK1, with signature features of a typical Ca2+ regulated kinase, also possesses a bipartite nuclear localization sequence (NLS) in its junction domain (JD). A striking feature in ZoCDPK1 is the rare occurrence of a coupling between the NLS in JD and consensus sequences in regulatory domain. Here, we further identified its nature of nuclear localization and its interaction partners. In the homology model generated for ZoCDPK1, the regulatory domain mimics the crystal structure of the regulatory domain in Arabidopsis CDPK1. Molecular docking simulation of importin (ZoIMPα), an important protein involved in nuclear translocation, into the NLS of ZoCDPK1 was well-visualized. Furthermore, the direct interaction of ZoCDPK1 and ZoIMPα proteins was studied by the yeast 2-hybrid (Y2H) system, which confirmed that junction domain (JD) is an important interaction module required for ZoCDPK1 and ZoIMPα binding. The probable interacting partners of ZoCDPK1 were also identified using Y2H experiment. Of the 10 different stress-related interacting partners identified for ZoCDPK1, NAC transcription factor (TF) needs special mention, especially in the context of ZoCDPK1 function. The interaction between ZoCDPK1 and NAC TF, in fact, corroborate with the results of gene expression and over-expression studies of ZoCDPK1. Hence ZoCDPK1 is operating through NAC TF mediated ABA-independent, cold non-responsive stress signaling pathway in ginger.
机译:钙依赖性蛋白激酶(CDPKs)是植物细胞中Ca 2 + 升高的重要传感器,调节与各种细胞过程有关的基因表达,这些过程与胁迫反应,生长发育,代谢和细胞骨架动力学有关。生姜由于其独特的风味和巨大的药用价值而被广泛使用。干扰生姜大规模生产的两个主要威胁是盐度和干旱胁迫。 ZoCDPK1(Zingiber officinale钙依赖性蛋白激酶1)是从姜中分离出来的盐分和干旱诱导型CDPK基因,在胁迫条件下会动态发生亚细胞定位。具有典型的Ca 2 + 调控激酶特征的ZoCDPK1,在其连接域(JD)中也具有二分核定位序列(NLS)。 ZoCDPK1的一个显着特征是JD中的NLS与调节域中的共有序列之间很少发生偶联。在这里,我们进一步确定了核本地化的性质及其相互作用的伙伴。在为ZoCDPK1生成的同源性模型中,调节域模仿拟南芥CDPK1中调节域的晶体结构。导入蛋白(ZoIMPα)(一种参与核易位的重要蛋白质)进入ZoCDPK1的NLS的分子对接模拟非常清晰。此外,酵母2杂交(Y2H)系统研究了ZoCDPK1和ZoIMPα蛋白的直接相互作用,这证实了连接域(JD)是ZoCDPK1和ZoIMPα结合所需的重要相互作用模块。 ZoCDPK1可能的相互作用伙伴也使用Y2H实验确定。在为ZoCDPK1确定的10种不同的应激相关相互作用伙伴中,特别要提及NAC转录因子(TF),尤其是在ZoCDPK1功能的情况下。实际上,ZoCDPK1和NAC TF之间的相互作用与ZoCDPK1的基因表达和过表达研究的结果相符。因此,ZoCDPK1通过NAC TF介导的姜中ABA依赖性冷非应答性应激信号转导途径起作用。

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