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Phosphorylation of serine residue modulates cotton Di19-1 and Di19-2 activities for responding to high salinity stress and abscisic acid signaling

机译:丝氨酸残基的磷酸化调节棉花Di19-1和Di19-2的活性以响应高盐分胁迫和脱落酸信号传递

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摘要

Di19 (drought-induced protein 19) family is a novel type of Cys2/His2 zinc-finger proteins. In this study, we demonstrated that cotton Di19-1 and Di19-2 (GhDi19-1/-2) proteins could be phosphorylated in vitro by the calcium-dependent protein kinase (CDPK). Mutation of Ser to Ala in N-terminus of GhDi19-1/-2 led to the altered subcellular localization of the two proteins, but the constitutively activated form (Ser was mutated to Asp) of GhDi19-1/-2 still showed the nuclear localization. GhDi19-1/-2 overexpression transgenic Arabidopsis seedlings displayed the hypersensitivity to high salinity and abscisic acid (ABA). However, Ser site-mutated GhDi19-1(S116A) and GhDi19-2(S114A), and Ser and Thr double sites-mutated GhDi19-1(S/T-A/A) and GhDi19-2(S/T-A/A) transgenic Arabidopsis did not show the salt- and ABA-hypersensitive phenotypes. In contrast, overexpression of Thr site-mutated GhDi19-1(T114A) and GhDi19-2(T112A) in Arabidopsis still resulted in salt- and ABA-hypersensitivity phenotypes, like GhDi19-1/-2 transgenic lines. Overexpression of GhDi19-1/-2 and their constitutively activated forms in Atcpk11 background could recover the salt- and ABA-insensitive phenotype of the mutant. Thus, our results demonstrated that Ser phosphorylation (not Thr phosphorylation) is crucial for functionally activating GhDi19-1/-2 in response to salt stress and ABA signaling during early plant development, and GhDi19-1/-2 proteins may be downstream targets of CDPKs in ABA signal pathway.
机译:Di19(干旱诱导蛋白19)家族是一种新型的Cys2 / His2锌指蛋白。在这项研究中,我们证明了棉花Di19-1和Di19-2(GhDi19-1 / -2)蛋白可以在体外被钙依赖蛋白激酶(CDPK)磷酸化。在GhDi19-1 / -2 N末端将Ser突变为Ala导致两种蛋白质的亚细胞定位发生改变,但GhDi19-1 / -2的组成型激活形式(Ser突变为Asp)仍显示核本土化。 GhDi19-1 / -2过表达转基因拟南芥幼苗表现出对高盐度和脱落酸(ABA)的超敏性。但是,Ser位点突变的GhDi19-1(S116A)和GhDi19-2(S114A),以及Ser和Thr双位点突变的GhDi19-1(S / TA / A)和GhDi19-2(S / TA / A)转基因拟南芥没有显示出对盐和ABA过敏的表型。相反,在拟南芥中,Thr位点突变的GhDi19-1(T114A)和GhDi19-2(T112A)的过表达仍导致盐和ABA超敏性表型,如GhDi19-1 / -2转基因株系。在Atcpk11背景中过表达GhDi19-1 / -2及其组成型激活形式可以恢复该突变体对盐和ABA不敏感的表型。因此,我们的结果表明,Ser磷酸化(而非Thr磷酸化)对于植物早期发育过程中响应盐胁迫和ABA信号转导功能激活GhDi19-1 / -2至关重要,而GhDi19-1 / -2蛋白可能是其下游靶点。 ABA信号途径中的CDPKs。

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