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首页> 外文期刊>Turkish Journal of Botany >Investigation of the regulation mechanism of Arabidopsis thaliana anion channel SLAH2
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Investigation of the regulation mechanism of Arabidopsis thaliana anion channel SLAH2

机译:拟南芥阴离子通道SLAH2调控机制的研究

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In recent years a slow-type anion channel (SLAC) family composing five members, including slow anion channel associated 1 (SLAC1) and four SLAC1 homologs (SLAHs), has been identified in Arabidopsis thaliana . The anion channels are activated by calcium-dependent protein kinases (CPKs) and play crucial roles in mediating anion fluxes across plasma membranes. SLAH2 is specifically expressed in root stele cells and has been characterized as a nitrate-selective anion channel activated by CPK21 and CBL-interacting protein kinase 23 (CIPK23). However, the interaction between CPKs and SLAH2 and how it is regulated remains to be elucidated. In this study we found that SLAH2 could be activated by a few CPKs from three subgroups of the CPK family. Out of those CPKs, the constitutively active form of CPK2 from subgroup 1 activates SLAH2, whereas the native as well as constitutively active form of CPK3 from subgroup 2 and CPK7, CPK10, and CPK32 from subgroup 3 activate SLAH2. We also explored the role of SLAH2 in root-to-shoot nitrate transport by measuring the nitrate contents in xylem sap, but no significant differences were observed between the slah2-1 T-DNA insertion mutant and SLAH2 overexpression lines. Together, these data demonstrate that SLAH2 is regulated by multiple CPKs with variable Ca2+ sensitivities. Further research is required to understand the role of SLAH2 in nitrate transport.
机译:近年来,在拟南芥中已鉴定出由五个成员组成的慢型阴离子通道(SLAC)家族,包括慢速阴离子通道相关1(SLAC1)和四个SLAC1同源物(SLAH)。阴离子通道被钙依赖性蛋白激酶(CPK)激活,并在介导跨质膜的阴离子通量中起关键作用。 SLAH2在根石碑细胞中特异性表达,并已被表征为由CPK21和与CBL相互作用的蛋白激酶23(CIPK23)激活的硝酸盐选择性阴离子通道。但是,CPK和SLAH2之间的相互作用以及其调控方式仍有待阐明。在这项研究中,我们发现SLAH2可以被CPK家族三个亚组的一些CPK激活。在这些CPK中,来自子组1的CPK2的组成性活性形式激活SLAH2,而来自子组2的CPK3的天然和组成性活性形式以及来自子组3的CPK7,CPK10和CPK32激活SLAH2。我们还通过测量木质部汁液中的硝酸盐含量探索了SLAH2在根到茎硝酸盐转运中的作用,但在slah2-1 T-DNA插入突变体和SLAH2过表达株系之间未观察到显着差异。总之,这些数据表明SLAH2受具有不同Ca 2 + 敏感性的多个CPK调控。需要进一步的研究以了解SLAH2在硝酸盐转运中的作用。

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