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CCDC22和CCDC93是两种潜在的与回收蛋白相互作用的蛋白,它们是拟南芥根和根毛生长所必需的。

CCDC22 and CCDC93, two potential retriever-interacting proteins, are required for root and root hair growth in Arabidopsis.

作者信息

Lewis Connor D, Preston Jill C, Tierney Mary L

机构信息

Department of Plant Biology, University of Vermont, Burlington, VT, United States.

出版信息

Front Plant Sci. 2022 Dec 22;13:1051503. doi: 10.3389/fpls.2022.1051503. eCollection 2022.

Abstract

Endomembrane trafficking is essential for plant growth and often depends on a balance between secretory and endocytic pathways. VPS26C is a component of the retriever complex which has been shown to function in the recycling of integral plasma membrane proteins in human cell culture and is part of a core retriever complex in Arabidopsis that is required for root hair growth. In this work, we report a characterization of the Arabidopsis homologues of CCDC22 and CCDC93, two additional proteins required for retriever function in humans. Phylogenetic analysis indicates that (AT1G55830) and (AT4G32560) are single copy genes in plants that are present across the angiosperms, but like , are absent from the grasses. Both and are required for root and root hair growth in Arabidopsis and localize primarily to the cytoplasm in root epidermal cells. Previous work has demonstrated a genetic interaction between VPS26C function and a VTI13-dependent trafficking pathway to the vacuole. To further test this model, we characterized the double mutant and show that like , is a suppressor of the root hair phenotype. Together this work identifies two new proteins essential for root and root hair growth in plants and demonstrate that the endosomal pathway(s) in which CCDC93 functions is genetically linked to a VTI13-dependent trafficking pathway to the vacuole.

摘要

内膜运输对植物生长至关重要,且通常依赖于分泌途径和内吞途径之间的平衡。VPS26C是回收复合物的一个组分,已证实在人类细胞培养中其在整合质膜蛋白的循环利用中发挥作用,并且是拟南芥中根毛生长所需的核心回收复合物的一部分。在这项工作中,我们报道了CCDC22和CCDC93的拟南芥同源物的特征,这是人类中回收功能所需的另外两种蛋白质。系统发育分析表明,(AT1G55830)和(AT4G32560)是植物中的单拷贝基因,存在于整个被子植物中,但与一样,在禾本科植物中不存在。和都是拟南芥根和根毛生长所必需的,并且主要定位于根表皮细胞的细胞质中。先前的工作已经证明了VPS26C功能与依赖于VTI13的液泡运输途径之间的遗传相互作用。为了进一步测试这个模型,我们对双突变体进行了表征,结果表明,与一样,是根毛表型的抑制因子。这项工作共同鉴定了植物根和根毛生长所必需的两种新蛋白质,并证明CCDC93发挥功能的内体途径在遗传上与依赖于VTI13的液泡运输途径相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47d1/9815543/f947af0b34bf/fpls-13-1051503-g002.jpg

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