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Import determinants of organelle-specific and dual targeting peptides of mitochondria and chloroplasts in Arabidopsis thaliana.

机译:拟南芥中线粒体和叶绿体的细胞器特异性和双重靶向肽的进口决定因素。

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摘要

Most of the mitochondrial and chloroplastic proteins are synthesized in the cytosol as precursor proteins carrying an N-terminal targeting peptide (TP) directing them specifically to a correct organelle. However, there is a group of proteins that are dually targeted to mitochondria and chloroplasts using an ambiguous N-terminal dual targeting peptide (dTP). Here, we have investigated pattern properties of import determinants of organelle-specific TPs and dTPs combining mathematical multivariate data analysis (MVDA) with in vitro organellar import studies. We have used large datasets of mitochondrial and chloroplastic proteins found in organellar proteomes as well as manually selected data sets of experimentally confirmed organelle-specific TPs and dTPs from Arabidopsis thaliana. Two classes of organelle-specific TPs could be distinguished by MVDA and potential patterns or periodicity in the amino acid sequence contributing to the separation were revealed. dTPs were found to have intermediate sequence features between the organelle-specific TPs. Interestingly, introducing positively charged residues to the dTPs showed clustering towards the mitochondrial TPs in silico and resulted in inhibition of chloroplast, but not mitochondrial import in in vitro organellar import studies. These findings suggest that positive charges in the N-terminal region of TPs may function as an 'avoidance signal' for the chloroplast import.
机译:大多数线粒体蛋白和叶绿体蛋白在细胞质中合成为前体蛋白,携带N端靶向肽(TP),将它们特异性地引导至正确的细胞器。但是,有一组蛋白质使用歧义的N端双重靶向肽(dTP)双重靶向线粒体和叶绿体。在这里,我们结合数学多变量数据分析(MVDA)与体外细胞器导入研究,研究了细胞器特异性TP和dTP导入决定因素的模式特性。我们已经使用了在细胞器蛋白质组中发现的线粒体和叶绿体蛋白质的大型数据集,以及从拟南芥中手动选择的经实验确认的细胞器特异性TP和dTP的数据集。 MVDA可以区分两类细胞器特异性TP,揭示了有助于分离的氨基酸序列的潜在模式或周期性。发现dTP在细胞器特异性TP之间具有中间序列特征。有趣的是,在dTPs中引入带正电荷的残基表明在计算机上朝着线粒体TPs聚集,并导致叶绿体被抑制,但在体外细胞器导入研究中并未抑制线粒体的导入。这些发现表明,TPs N端区域的正电荷可能充当叶绿体输入的“回避信号”。

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