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富含半胱氨酸的 10kDa 醇溶蛋白在水稻蛋白体 I 形成中的作用。

A role for the cysteine-rich 10 kDa prolamin in protein body I formation in rice.

机构信息

Institute of Genetic Resources, Faculty of Agriculture, Kyushu University, Hakozaki, Fukuoka, Japan.

出版信息

Plant Cell Physiol. 2011 Jun;52(6):1003-16. doi: 10.1093/pcp/pcr053. Epub 2011 Apr 26.

Abstract

The rice prolamins consist of cysteine-rich 10 kDa (CysR10), 14 kDa (CysR14) and 16 kDa (CysR16) molecular species and a cysteine-poor 13 kDa (CysP13) polypeptide. These storage proteins form protein bodies (PBs) composed of single spherical intracisternal inclusions assembled within the lumen of the rough endoplasmic reticulum. Immunofluorescence and immunoelectron microscopy demonstrated that CysR10 and CysP13 were asymmetrically distributed within the PBs, with the former concentrated at the electron-dense center core region and the latter distributed mainly to the electron-lucent peripheral region. These results together with temporal expression data showed that the formation of prolamin-containing PB-I in the wild-type endosperm was initiated by the accumulation of CysR10 to form the center core. In mutants deficient for cysteine-rich prolamins, the typical PB-I structures containing the electron-dense center core were not observed, and instead were replaced by irregularly shaped, electron-lucent, hypertrophied PBs. Similar, deformed PBs were observed in a CysR10 RNA interference plant line. These results suggest that CysR10, through its formation of the central core and its possible interaction with other cysteine-rich prolamins, is required for tight packaging of the proteins into a compact spherical structure.

摘要

稻米醇溶蛋白由富含半胱氨酸的 10 kDa(CysR10)、14 kDa(CysR14)和 16 kDa(CysR16)分子物种以及一种半胱氨酸贫乏的 13 kDa(CysP13)多肽组成。这些贮藏蛋白形成由内质网腔内部组装的单一球形内膜内含物组成的蛋白体(PBs)。免疫荧光和免疫电子显微镜显示,CysR10 和 CysP13 在 PBs 中呈不对称分布,前者集中在电子致密的中心核心区域,后者主要分布在电子透明的外周区域。这些结果与时间表达数据一起表明,在野生型胚乳中,含醇溶蛋白 PB-I 的形成是由 CysR10 的积累形成中心核心开始的。在富含半胱氨酸醇溶蛋白缺陷的突变体中,没有观察到含有电子致密中心核心的典型 PB-I 结构,而是被不规则形状、电子透明、肥大的 PBs 所取代。在 CysR10 RNA 干扰植物系中也观察到类似的变形 PBs。这些结果表明,CysR10 通过形成中心核心及其与其他富含半胱氨酸醇溶蛋白的可能相互作用,对于将蛋白质紧密包装成紧凑的球形结构是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a4a/3110882/d51d40c7179d/pcr053f1.jpg

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