首页> 外文期刊>The Plant Cell >A transit peptide-like sorting signal at the C terminus directs the Bienertia sinuspersici preprotein receptor Toc159 to the chloroplast outer membrane.
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A transit peptide-like sorting signal at the C terminus directs the Bienertia sinuspersici preprotein receptor Toc159 to the chloroplast outer membrane.

机译:C末端的转运肽样分选信号将Bienertia sinuspersici 前蛋白受体Toc159导向叶绿体外膜。

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Although Toc159 is known to be one of the key GTPase receptors for selective recognition of chloroplast preproteins, the mechanism for its targeting to the chloroplast surface remains unclear. To compare the targeting of these GTPase receptors, we identified two Toc159 isoforms and a Toc34 from Bienertia sinuspersici, a single-cell C4 species with dimorphic chloroplasts in individual chlorenchyma cells. Fluorescent protein tagging and immunogold studies revealed that the localization patterns of Toc159 were distinctive from those of Toc34, suggesting different targeting pathways. Bioinformatics analyses indicated that the C-terminal tails (CTs) of Toc159 possess physicochemical and structural properties of chloroplast transit peptides (cTPs). These results were further confirmed by fluorescent protein tagging, which showed the targeting of CT fusion proteins to the chloroplast surface. The CT of Bs Toc159 in reverse orientation functioned as a cleavable cTP that guided the fluorescent protein to the stroma. Moreover, a Bs Toc34 mutant protein was retargeted to the chloroplast envelope using the CTs of Toc159 or reverse sequences of other cTPs, suggesting their conserved functions. Together, our data show that the C terminus and the central GTPase domain represent a novel dual domain-mediated sorting mechanism that might account for the partitioning of Toc159 between the cytosol and the chloroplast envelope for preprotein recognition.
机译:尽管已知Toc159是选择性识别叶绿体前蛋白的关键GTPase受体之一,但其靶向叶绿体表面的机制仍不清楚。为了比较这些GTPase受体的靶向性,我们鉴定了两个Tonc159亚型和一个来自Bientia sinuspersici 的Toc34,这是一个单细胞C 4 物种,在单个绿藻细胞中具有双态叶绿体。荧光蛋白标记和免疫金研究表明,Toc159的定位模式与Toc34的定位模式不同,这提示了不同的靶向途径。生物信息学分析表明,Toc159的C末端尾巴(CT)具有叶绿体转运肽(cTPs)的理化和结构特性。荧光蛋白标签进一步证实了这些结果,荧光标签显示了CT融合蛋白靶向叶绿体表面。 Bs Toc159的CT反向定向充当可切割的cTP,将荧光蛋白引导至基质。此外,使用Toc159的CT或其他cTP的反向序列,将Bs Toc34突变蛋白重新定位到叶绿体包膜,表明它们的保守功能。在一起,我们的数据表明,C末端和中央GTPase域代表一种新型的双域介导的分选机制,该机制可能解释了Toc159在胞质和叶绿体包膜之间的分配,以进行前蛋白识别。

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