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Characterization of Chloroplast Protein Import without Tic56 a Component of the 1-Megadalton Translocon at the Inner Envelope Membrane of Chloroplasts

机译:没有Tic56的叶绿体蛋白导入的表征Tic56是叶绿体内膜上1-Megadalton Translocon的一个成分

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摘要

We report on the characterization of Tic56, a unique component of the recently identified 1-MD translocon at the inner envelope membrane of chloroplasts (TIC) in Arabidopsis (Arabidopsis thaliana) comprising Tic20, Tic100, and Tic214. We isolated Tic56 by copurification with Tandem Affinity Purification-tagged Toc159 in the absence of precursor protein, indicating spontaneous and translocation-independent formation of the translocon at the outer envelope membrane of chloroplasts (TOC) and TIC supercomplexes. Tic56 mutant plants have an albino phenotype and are unable to grow without an external carbon source. Using specific enrichment of protein amino termini, we analyzed the tic56-1 and plastid protein import2 (toc159) mutants to assess the in vivo import capacity of plastids in mutants of an outer and inner envelope component of the anticipated TOC-TIC supercomplex. In both mutants, we observed processing of several import substrates belonging to various pathways. Our results suggest that despite the severe developmental defects, protein import into Tic56-deficient plastids is functional to a considerable degree, indicating the existence of alternative translocases at the inner envelope membrane.
机译:我们报告了Tic56的特性,Tic56是在拟南芥(Arabidopsis thaliana)的叶绿体(TIC)内膜中膜中最近鉴定出的1-MD translocon的独特组成,其中包括Tic20,Tic100和Tic214。我们在不存在前体蛋白的情况下,通过与串联亲和纯化标签的Toc159共纯化,分离了Tic56,表明叶绿体(TOC)和TIC超复合物的外膜上的自转子的自发形成和不依赖于转运。 Tic56突变植物具有白化表型,没有外部碳源就无法生长。使用蛋白质氨基末端的特异性富集,我们分析了tic56-1和质体蛋白import2(toc159)突变体,以评估预期TOC-TIC超复合物的外部和内部包膜成分的突变体中质体的体内导入能力。在这两个突变体中,我们观察到了几种属于各种途径的进口底物的加工过程。我们的研究结果表明,尽管存在严重的发育缺陷,但蛋白质在Tic56缺陷型质体中的导入仍在相当大的程度上起作用,这表明在内包膜上存在替代的转位酶。

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