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The Arabidopsis P4-ATPase ALA3 Localizes to the Golgi and Requires a β-Subunit to Function in Lipid Translocation and Secretory Vesicle Formation

机译:拟南芥P4-ATPase ALA3定位于高尔基体,需要β亚基在脂质转运和分泌性囊泡形成中起作用

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摘要

Vesicle budding in eukaryotes depends on the activity of lipid translocases (P4-ATPases) that have been implicated in generating lipid asymmetry between the two leaflets of the membrane and in inducing membrane curvature. We show that Aminophospholipid ATPase3 (ALA3), a member of the P4-ATPase subfamily in Arabidopsis thaliana, localizes to the Golgi apparatus and that mutations of ALA3 result in impaired growth of roots and shoots. The growth defect is accompanied by failure of the root cap to release border cells involved in the secretion of molecules required for efficient root interaction with the environment, and ala3 mutants are devoid of the characteristic trans-Golgi proliferation of slime vesicles containing polysaccharides and enzymes for secretion. In yeast complementation experiments, ALA3 function requires interaction with members of a novel family of plant membrane-bound proteins, ALIS1 to ALIS5 (for ALA-Interacting Subunit), and in this host ALA3 and ALIS1 show strong affinity for each other. In planta, ALIS1, like ALA3, localizes to Golgi-like structures and is expressed in root peripheral columella cells. We propose that the ALIS1 protein is a β-subunit of ALA3 and that this protein complex forms an important part of the Golgi machinery required for secretory processes during plant development.
机译:真核生物中的囊泡出芽取决于脂质转座酶(P4-ATPases)的活性,脂质转座酶(P4-ATPases)的作用与膜的两个小叶之间的脂质不对称和诱导膜曲率有关。我们显示,氨基磷脂ATPase3(ALA3),拟南芥中P4-ATPase亚家族的成员,定位于高尔基体和ALA3的突变导致根和芽的生长受损。生长缺陷伴随着根冠未能释放与环境有效根相互作用所需分子的分泌所涉及的边界细胞,并且ala3突变体缺乏粘液囊泡中含有多糖和酶的粘液囊泡的反式高尔基体增殖。分泌。在酵母互补实验中,ALA3功能需要与植物膜结合蛋白新家族ALIS1至ALIS5(对于ALA相互作用亚基)的成员相互作用,并且在该宿主中,ALA3和ALIS1彼此显示出强大的亲和力。在植物中,ALIS1像ALA3一样,定位于高尔基样结构,并在根周围小肠细胞中表达。我们建议ALIS1蛋白是ALA3的β亚基,并且该蛋白复合物构成植物发育过程中分泌过程所需的高尔基机制的重要组成部分。

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