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首页> 外文期刊>The Plant Cell >A Tripartite SNARE-K Channel Complex Mediates in Channel-Dependent K Nutrition in Arabidopsis.
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A Tripartite SNARE-K Channel Complex Mediates in Channel-Dependent K Nutrition in Arabidopsis.

机译:SNARE-K三通道​​通道复合物介导拟南芥中通道依赖性钾营养。

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A few membrane vesicle trafficking (SNARE) proteins in plants are associated with signaling and transmembrane ion transport, including control of plasma membrane ion channels. Vesicle traffic contributes to the population of ion channels at the plasma membrane. Nonetheless, it is unclear whether these SNAREs also interact directly to affect channel gating and, if so, what functional impact this might have on the plant. Here, we report that the Arabidopsis thaliana SNARE SYP121 binds to KC1, a regulatory K channel subunit that assembles with different inward-rectifying K channels to affect their activities. We demonstrate that SYP121 interacts preferentially with KC1 over other Kv-like K channel subunits and that KC1 interacts specifically with SYP121 but not with its closest structural and functional homolog SYP122 nor with another related SNARE SYP111. SYP121 promoted gating of the inward-rectifying K channel AKT1 but only when heterologously coexpressed with KC1. Mutation in any one of the three genes, SYP121, KC1, and AKT1, selectively suppressed the inward-rectifying K current in Arabidopsis root epidermal protoplasts as well as K acquisition and growth in seedlings when channel-mediated K uptake was limiting. That SYP121 should be important for gating of a K channel and its role in inorganic mineral nutrition demonstrates an unexpected role for SNARE-ion channel interactions, apparently divorced from signaling and vesicle traffic. Instead, it suggests a role in regulating K uptake coordinately with membrane expansion for cell growth.
机译:植物中的一些膜囊泡运输(SNARE)蛋白与信号传导和跨膜离子运输有关,包括对质膜离子通道的控制。囊泡运输有助于质膜上离子通道的填充。尽管如此,目前尚不清楚这些SNARE是否也直接相互作用以影响通道门控,如果如此,则可能对植物产生什么功能影响。在这里,我们报告说拟南芥SNARE SYP121绑定到KC1,KC1调节性K通道亚基,与不同的向内整流K通道组装在一起,以影响其活动。我们证明,SYP121与KC1优先于其他Kv样K通道亚基相互作用,并且KC1专门与SYP121相互作用,但不与其最接近的结构和功能同源物SYP122或与另一个相关的SNARE SYP111相互作用。 SYP121促进向内整流的K通道AKT1的门控,但仅当与KC1异源共表达时。当通道介导的钾吸收受到限制时,SYP121,KC1和AKT1这三个基因中的任何一个基因的突变都会选择性抑制拟南芥根表皮原生质体中向内整流的K电流以及幼苗中的K吸收和生长。 SYP121对K通道的门控很重要,它在无机矿物质营养中的作用证明了SNARE离子通道相互作用的意外作用,显然与信号传导和囊泡运输分离。相反,它暗示了与细胞生长的膜扩张协调地调节钾摄取的作用。

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