拟南芥R-SNARE蛋白VAMP721与KAT1和KC1钾离子通道相互作用,以调节质膜上的钾离子电流。

The Arabidopsis R-SNARE VAMP721 Interacts with KAT1 and KC1 K+ Channels to Moderate K+ Current at the Plasma Membrane.

作者信息

Zhang Ben, Karnik Rucha, Wang Yizhou, Wallmeroth Niklas, Blatt Michael R, Grefen Christopher

机构信息

Laboratory of Plant Physiology and Biophysics, University of Glasgow, Glasgow G12 8QQ, United Kingdom.

ZMBP Developmental Genetics, D-72076 Tuebingen, Germany.

出版信息

Plant Cell. 2015 Jun;27(6):1697-717. doi: 10.1105/tpc.15.00305. Epub 2015 May 22.

Abstract

SNARE (soluble N-ethylmaleimide-sensitive factor protein attachment protein receptor) proteins drive vesicle traffic, delivering membrane and cargo to target sites within the cell and at its surface. They contribute to cell homeostasis, morphogenesis, and pathogen defense. A subset of SNAREs, including the Arabidopsis thaliana SNARE SYP121, are known also to coordinate solute uptake via physical interactions with K(+) channels and to moderate their gating at the plasma membrane. Here, we identify a second subset of SNAREs that interact to control these K(+) channels, but with opposing actions on gating. We show that VAMPs (vesicle-associated membrane proteins), which target vesicles to the plasma membrane, also interact with and suppress the activities of the inward-rectifying K(+) channels KAT1 and KC1. Interactions were evident in yeast split-ubiquitin assays, they were recovered in vivo by ratiometric bimolecular fluorescence complementation, and they were sensitive to mutation of a single residue, Tyr-57, within the longin domain of VAMP721. Interaction was also recovered on exchange of the residue at this site in the homolog VAMP723, which normally localizes to the endoplasmic reticulum and otherwise did not interact. Functional analysis showed reduced channel activity and alterations in voltage sensitivity that are best explained by a physical interaction with the channel gates. These actions complement those of SYP121, a cognate SNARE partner of VAMP721, and lead us to propose that the channel interactions reflect a "hand-off" in channel control between the two SNARE proteins that is woven together with vesicle fusion.

摘要

SNARE(可溶性N - 乙基马来酰亚胺敏感因子附着蛋白受体)蛋白驱动囊泡运输,将膜和货物运送到细胞内及其表面的靶位点。它们有助于细胞稳态、形态发生和病原体防御。已知包括拟南芥SNARE SYP121在内的一部分SNARE蛋白还通过与钾离子通道的物理相互作用来协调溶质摄取,并调节它们在质膜上的门控。在这里,我们鉴定出另一组相互作用以控制这些钾离子通道的SNARE蛋白,但它们对门控具有相反的作用。我们表明,将囊泡靶向质膜的VAMP(囊泡相关膜蛋白)也与内向整流钾离子通道KAT1和KC1相互作用并抑制其活性。在酵母分裂泛素分析中,相互作用很明显,通过比率型双分子荧光互补在体内得以恢复,并且它们对VAMP721的longin结构域内单个残基Tyr - 57的突变敏感。在同源物VAMP723中该位点的残基交换后也恢复了相互作用,VAMP723通常定位于内质网,否则不发生相互作用。功能分析表明通道活性降低以及电压敏感性改变,这最好通过与通道门的物理相互作用来解释。这些作用与VAMP721的同源SNARE伙伴SYP121的作用互补,从而使我们提出通道相互作用反映了两种SNARE蛋白之间在通道控制上的“交接”,这种交接与囊泡融合交织在一起。

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