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植物病毒运动蛋白的丙氨酸扫描诱变鉴定出三个功能域。

Alanine scanning mutagenesis of a plant virus movement protein identifies three functional domains.

作者信息

Giesman-Cookmeyer D, Lommel S A

机构信息

Department of Plant Pathology, North Carolina State University, Raleigh 27695-7616.

出版信息

Plant Cell. 1993 Aug;5(8):973-82. doi: 10.1105/tpc.5.8.973.

Abstract

Alanine scanning mutagenesis was performed on the red clover necrotic mosaic virus (RCNMV) movement protein (MP), and 12 mutants were assayed in vitro for RNA binding characteristics and in vivo for their ability to potentiate RCNMV cell-to-cell movement. The mutant phenotypes that were identified in vitro and in vivo suggest both that cooperative RNA binding is not necessary for cell-to-cell movement in vivo and that only a fraction of the wild-type RNA binding may be required. The MP mutants defined at least three distinct functional regions in the MP: an RNA binding domain, a cooperative RNA binding domain, and a third domain that is necessary for cell-to-cell movement in vivo. This third domain may be required for targeting the MP to cell walls and plasmodesmata, interacting with host proteins, folding, or possibly binding RNA into a functional ribonucleoprotein complex capable of cell-to-cell movement.

摘要

对红三叶草坏死花叶病毒(RCNMV)的运动蛋白(MP)进行了丙氨酸扫描诱变,并对12个突变体进行了体外RNA结合特性分析以及体内增强RCNMV细胞间运动能力的分析。在体外和体内鉴定出的突变体表型表明,体内细胞间运动并不需要协同RNA结合,而且可能仅需要一部分野生型RNA结合。MP突变体在MP中定义了至少三个不同的功能区域:一个RNA结合结构域、一个协同RNA结合结构域,以及体内细胞间运动所必需的第三个结构域。这个第三个结构域可能是将MP靶向细胞壁和胞间连丝、与宿主蛋白相互作用、折叠,或者可能是将RNA结合成能够进行细胞间运动的功能性核糖核蛋白复合体所必需的。

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