Department of Botany, University of Wisconsin, Madison, Wisconsin 53706-1381, USA.
Plant Physiol. 2011 Jan;155(1):354-69. doi: 10.1104/pp.110.166546. Epub 2010 Nov 4.
Proteins that are synthesized on cytoplasmic ribosomes but function within plastids must be imported and then targeted to one of six plastid locations. Although multiple systems that target proteins to the thylakoid membranes or thylakoid lumen have been identified, a system that can direct the integration of inner envelope membrane proteins from the stroma has not been previously described. Genetics and localization studies were used to show that plastids contain two different Sec systems with distinct functions. Loss-of-function mutations in components of the previously described thylakoid-localized Sec system, designated as SCY1 (At2g18710), SECA1 (At4g01800), and SECE1 (At4g14870) in Arabidopsis (Arabidopsis thaliana), result in albino seedlings and sucrose-dependent heterotrophic growth. Loss-of-function mutations in components of the second Sec system, designated as SCY2 (At2g31530) and SECA2 (At1g21650) in Arabidopsis, result in arrest at the globular stage and embryo lethality. Promoter-swap experiments provided evidence that SCY1 and SCY2 are functionally nonredundant and perform different roles in the cell. Finally, chloroplast import and fractionation assays and immunogold localization of SCY2-green fluorescent protein fusion proteins in root tissues indicated that SCY2 is part of an envelope-localized Sec system. Our data suggest that SCY2 and SECA2 function in Sec-mediated integration and translocation processes at the inner envelope membrane.
在细胞质核糖体上合成但在质体中发挥功能的蛋白质必须被导入,并靶向到六个质体位置之一。虽然已经鉴定出多个将蛋白质靶向到类囊体膜或类囊体腔的系统,但以前没有描述过可以指导基质中内被膜蛋白整合的系统。遗传学和定位研究表明,质体包含两个具有不同功能的不同 Sec 系统。先前描述的定位于类囊体的 Sec 系统的成分(在拟南芥中分别命名为 SCY1(At2g18710)、SECA1(At4g01800)和 SECE1(At4g14870))的功能丧失突变导致白化苗和蔗糖依赖性异养生长。第二个 Sec 系统成分(在拟南芥中分别命名为 SCY2(At2g31530)和 SECA2(At1g21650))的功能丧失突变导致在球状阶段停止和胚胎致死。启动子交换实验提供了证据表明 SCY1 和 SCY2 在功能上不是冗余的,并且在细胞中发挥不同的作用。最后,叶绿体导入和分级分离实验以及 SCY2-绿色荧光蛋白融合蛋白在根组织中的免疫金定位表明,SCY2 是定位于被膜的 Sec 系统的一部分。我们的数据表明,SCY2 和 SECA2 在 Sec 介导的整合和易位过程中在内被膜上发挥作用。