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Isolation and characterization of a novel v-SNARE family protein that interacts with a calcium-dependent protein kinase from the common ice plant, Mesembryanthemum crystallinum

机译:一种新型v-SNARE家族蛋白的分离和鉴定,该蛋白与普通冰厂Mesembryanthemum crystallinum的钙依赖性蛋白激酶相互作用

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McCPK1 (Mesembryanthemum crystallinum calcium-dependent protein kinase 1) mRNA expression is transiently salinity- and dehydration-stress responsive. The enzyme also undergoes dynamic subcellular localization changes in response to these same stresses. Using the yeast-two hybrid system, we have isolated and characterized a M. crystallinum CPK1 Adaptor Protein 2 (McCAP2). We show that McCPK1 interacts with the C-terminal, coiled-coil containing region of McCAP2 in the yeast two-hybrid system. This interaction was confirmed in vitro between the purified recombinant forms of each of the proteins and in vivo by coimmunoprecipitation experiments from plant extracts. McCAP2, however, was not a substrate for McCPK1. Computational threading analysis suggested that McCAP2 is a member of a novel family of proteins with unknown function also found in rice and Arabidopsis. These proteins contain coiled-coil spectrin repeat domains present in the syntaxin superfamily that participate in vesicular and protein trafficking. Consistent with the interaction data, subcellular localization and fractionation studies showed that McCAP2 colocalizes with McCPK1 to vesicular structures located on the actin cytoskeleton and within the endoplasmic reticulum in cells subjected to low humidity stress. McCAP2 also colocalizes with AtVTI1a, an Arabidopsis v-SNARE [vesicle-soluble N-ethyl maleimide-sensitive factor (NSF) attachment protein (SNAP) receptor] present in the trans-Golgi network (TGN) and prevacuolar compartments (PVCs). Both interaction and subcellular localization studies suggest that McCAP2 may possibly serve as an adaptor protein responsible for vesicle-mediated trafficking of McCPK1 to or from the plasma membrane along actin microfilaments of the cytoskeleton.
机译:McCPK1(结晶膜钙依赖性蛋白激酶1)mRNA表达是短暂的盐度和脱水压力响应。该酶还响应这些相同的应力而经历动态的亚细胞定位变化。使用酵母二杂交系统,我们已经分离并鉴定了结晶支原体CPK1衔接蛋白2(McCAP2)。我们显示,McCPK1与酵母双杂化系统中的MCPAP2的C末端,含卷曲螺旋的区域相互作用。通过从植物提取物中进行的共免疫沉淀实验,在每种蛋白质的纯化重组形式与体外之间证实了这种相互作用。但是,McCAP2并不是McCPK1的底物。计算线程分析表明,McCAP2是在水稻和拟南芥中也发现的功能未知的新型蛋白质家族的成员。这些蛋白质包含存在于syntaxin超家族中的参与卷曲和蛋白质运输的卷曲螺旋血影蛋白重复结构域。与相互作用数据一致,亚细胞定位和分级研究表明,McCAP2与McCPK1共同定位在受到低湿度胁迫的细胞中,位于肌动蛋白细胞骨架和内质网内的囊泡结构。 McCAP2还与反式高尔基体网络(TGN)和真空前室(PVC)中存在的拟南芥v-SNARE [囊泡可溶性N-乙基马来酰亚胺敏感因子(NSF)附着蛋白(SNAP)受体] AtVTI1a共定位。相互作用和亚细胞定位研究均表明,McCAP2可能充当衔接蛋白,负责沿着细胞骨架的肌动蛋白微丝囊泡介导的McCPK1向或从质膜转运。

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