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Proteome Analysis of Detergent-Resistant Membranes (DRMs) Associated with OsRac1-Mediated Innate Immunity in Rice

机译:水稻中与OsRac1介导的先天免疫相关的耐洗涤剂膜(DRMs)的蛋白质组学分析

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OsRac1, a member of the Rac/Rop GTPase family, plays important roles as a molecular switch in rice innate immunity, and the active form of OsRac1 functions in the plasma membrane (PM). To study the precise localization of OsRac1 in the PM and its possible association with other signaling components, we performed proteomic analysis of DRMs (detergent-resistant membranes) isolated from rice suspension-cultured cells transformed with myc-tagged constitutively active (CA) OsRac1. DRMs are regions of the PM that are insoluble after Triton X-100 treatment under cold conditions and are thought to be involved in various signaling processes in animal, yeast and plant cells. We identified 192 proteins in DRMs that included receptor-like kinases (RLKs) such as Xa21, nucleotide-binding leucine-rich repeat (NB-LRR)-type disease resistance proteins, a glycosylphosphatidylinositol (GPI)-anchored protein, syntaxin, NADPH oxidase, a WD-40 repeat family protein and various GTP-binding proteins. Many of these proteins have been previously identified in the DRMs isolated from other plant species, and animal and yeast cells, validating the methods used in our study. To examine the possible association of DRMs and OsRac1-mediated innate immunity, we used rice suspension-cultured cells transformed with myc-tagged wild-type (WT) OsRac1 and found that OsRac1 and RACK1A, an effector of OsRac1, shifted to the DRMs after chitin elicitor treatment. These results suggest that OsRac1-mediated innate immunity is associated with DRMs in the PM.
机译:OsRac1是Rac / Rop GTPase家族的成员,在水稻固有免疫中作为分子开关发挥重要作用,OsRac1的活性形式在质膜(PM)中起作用。为了研究OsRac1在PM中的精确定位及其与其他信号传导成分的可能联系,我们对从用myc标记组成型活性(CA)OsRac1转化的水稻悬浮培养细胞中分离的DRM(去污剂膜)进行了蛋白质组学分析。 DRM是Triton X-100在寒冷条件下处理后不溶的PM区域,被认为与动物,酵母和植物细胞中的各种信号传导过程有关。我们在DRM中鉴定了192种蛋白,包括Xa21等受体样激酶(RLK),核苷酸结合的富含亮氨酸的重复序列(NB-LRR)型抗病蛋白,糖基磷脂酰肌醇(GPI)锚定蛋白,语法,NADPH氧化酶,WD-40重复家族蛋白和各种GTP结合蛋白。这些蛋白质中的许多先前已在从其他植物物种以及动物和酵母细胞中分离出的DRM中进行了鉴定,从而验证了我们研究中使用的方法。为了检查DRM和OsRac1介导的先天免疫的可能联系,我们使用myc标记的野生型(WT)OsRac1转化的水稻悬浮培养细胞,发现OsRac1和RACK1A(OsRac1的效应子)在转移后转移到DRM几丁质引发剂治疗。这些结果表明,OsRac1介导的先天免疫与PM中的DRM相关。

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