Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1, Tennodai, Tsukuba 305-8572, Japan.
Plant J. 2010 Nov;64(3):402-10. doi: 10.1111/j.1365-313x.2010.04334.x.
In all plants and algae, most plastid proteins are encoded by the nuclear genome and, consequently, need to be transported into plastids across multiple membranes. In organisms with secondary plastids, which evolved by secondary endosymbioses, and are surrounded by three or four envelope membranes, precursors of nuclear-encoded plastid proteins generally have an N-terminal bipartite targeting sequence that consists of an endoplasmic reticulum (ER)-targeting signal peptide (SP) and a transit peptide-like (TPL) sequence. The bipartite targeting sequences have been demonstrated to be necessary and sufficient for targeting proteins into the plastids of many algal groups, including chlorarachniophytes. Here, we report a new type of targeting signal that is required for delivering a RubisCO small subunit (RbcS) protein into the secondary plastids of chlorarachniophyte algae. In this study, we analyzed the plastid-targeting ability of an RbcS pre-protein, using green fluorescent protein (GFP) as a reporter molecule in chlorarachniophyte cells. We demonstrate that the N-terminal bipartite targeting sequence of the RbcS pre-protein is not sufficient, and that a part of the mature protein is also necessary for plastid targeting. By deletion analyses of amino acids, we determined the approximate location of an internal plastid-targeting signal within the mature protein, which is involved in targeting the protein from the ER into the chlorarachniophyte plastids.
在所有植物和藻类中,大多数质体蛋白由核基因组编码,因此需要穿过多个膜进入质体。在具有次生质体的生物中,这些质体通过二次内共生进化而来,被三个或四个包膜包围,核编码质体蛋白的前体通常具有 N 端二分体靶向序列,由内质网 (ER) 靶向信号肽 (SP) 和转运肽样 (TPL) 序列组成。二分体靶向序列已被证明对于将蛋白质靶向到许多藻类群体的质体中是必要和充分的,包括 Chlorarachniophytes。在这里,我们报告了一种新型靶向信号,它是将 RubisCO 小亚基 (RbcS) 蛋白递送到 Chlorarachniophyte 藻类的次生质体中所必需的。在这项研究中,我们使用绿色荧光蛋白 (GFP) 作为报告分子在 Chlorarachniophyte 细胞中分析了 RbcS 前蛋白的质体靶向能力。我们证明,RbcS 前蛋白的 N 端二分体靶向序列是不够的,成熟蛋白的一部分对于质体靶向也是必需的。通过氨基酸缺失分析,我们确定了成熟蛋白中内部质体靶向信号的大致位置,该信号涉及将蛋白从 ER 靶向到 Chlorarachniophyte 质体中。