Center of Membrane Proteomics, Cluster of Excellence Macromolecular Complexes Frankfurt, Department of Biosciences, Molecular Cell Biology of Plants, Johann-Wolfgang-Goethe University Frankfurt, D-60438 Frankfurt, Germany.
Plant Cell Environ. 2013 May;36(5):970-83. doi: 10.1111/pce.12030. Epub 2013 Jan 7.
The import of cytosolically synthesized precursor proteins into chloroplasts by the translocon at the outer envelope membrane of chloroplasts (TOC) is crucial for organelle function. The recognition of precursor proteins at the chloroplast surface precedes translocation and involves the membrane-inserted receptor subunits Toc34 and Toc159. A third receptor, Toc64, was discussed to recognize cytosolic complexes guiding precursor proteins to the membrane surface, but this function remains debated. We analysed Arabidopsis thaliana plants carrying a T-DNA insertion in the gene encoding the Toc64 homolog Toc64-III. We observed a light intensity-dependent growth phenotype, which is distinct from the phenotype of ppi1, the previously described mutant of the TOC34 homolog TOC33. Furthermore, chloroplast import of the model precursor proteins pOE33 and pSSU into chloroplasts is reduced in protoplasts isolated from plants with impaired Toc64-III function. This suggests that Toc64-III modulates the translocation efficiency in vivo. A ppi1 and toc64-III double mutant shows a significant increase in the transcript levels of HSP90 and TOC75-III, the latter coding for the pore-forming TOC component. Remarkably, the protein level of Toc75-III is significantly reduced, suggesting that Toc64-III and Toc33 cooperate in the insertion or stabilization of Toc75-III. Accordingly, the results presented support Toc64 as an import-relevant component of the TOC complex.
质体基质中合成的前体蛋白通过质体(TOC)外膜上的转运体进入质体对于细胞器功能至关重要。前体蛋白在质体表面的识别先于易位,并涉及膜插入受体亚基Toc34 和Toc159。第三个受体Toc64 被认为识别引导前体蛋白到膜表面的细胞质复合物,但这一功能仍存在争议。我们分析了拟南芥植物携带 T-DNA 插入编码 Toc64 同源物 Toc64-III 的基因。我们观察到光强度依赖性生长表型,与先前描述的 TOC34 同源物 TOC33 的 ppi1 突变体的表型不同。此外,在功能受损的 Toc64-III 植物原生质体中,模型前体蛋白 pOE33 和 pSSU 进入质体的导入减少。这表明 Toc64-III 在体内调节易位效率。ppi1 和 toc64-III 双突变体中 HSP90 和 TOC75-III 的转录水平显著增加,后者编码形成 TOC 组件的孔形成 TOC75-III。值得注意的是,Toc75-III 的蛋白水平显着降低,表明 Toc64-III 和 Toc33 合作插入或稳定 Toc75-III。因此,提出的结果支持 Toc64 作为 TOC 复合物的一个与导入相关的组成部分。