Department of Biosciences, Molecular Cell Biology of Plants, Johann-Wolfgang-Goethe University Frankfurt, Max-von-Laue Strasse 9, Frankfurt am Main, Germany.
Plant Mol Biol. 2011 Nov;77(4-5):381-90. doi: 10.1007/s11103-011-9818-5. Epub 2011 Aug 28.
Tic20 is a central, membrane-embedded component of the precursor protein translocon of the inner envelope of chloroplasts (TIC). In Arabidopsis thaliana, four different isoforms of Tic20 exist. They are annotated as atTic20-I, -II, -IV and -V and form two distinct phylogenetic subfamilies in embryophyta. Consistent with atTic20-I being the only essential isoform for chloroplast development, we show that the protein is exclusively targeted to the chloroplasts inner envelope. The same result is observed for atTic20-II. In contrast, atTic20-V is localized in thylakoids and atTic20-IV dually localizes to chloroplasts and mitochondria. These results together with the previously established expression profiles explain the recently described phenotypes of Tic20 knockout plants and point towards a functional diversification of these proteins within the family. For all Tic20 proteins a 4-helix topology is proposed irrespective of the targeted membrane, which in part could be confirmed in vivo by application of a self-assembling GFP-based topology approach. By the same approach we show that the inner envelope localized Tic20 proteins expose their C-termini to the chloroplast stroma. This localization would be consistent with the positive inside rule considering a stromal translocation intermediate as discussed.
Tic20 是叶绿体(TIC)内膜前体蛋白易位器的中央膜嵌入成分。在拟南芥中,存在四种不同的 Tic20 同工型。它们被注释为 atTic20-I、-II、-IV 和 -V,并在胚胎植物中形成两个不同的系统发育亚家族。与 atTic20-I 是叶绿体发育所必需的唯一同工型一致,我们表明该蛋白仅靶向叶绿体的内膜。同样的结果也适用于 atTic20-II。相比之下,atTic20-V 定位于类囊体,而 atTic20-IV 双重定位于叶绿体和线粒体。这些结果与先前建立的表达谱一起解释了 Tic20 敲除植物的最近描述的表型,并指向这些蛋白在家族内的功能多样化。对于所有 Tic20 蛋白,提出了一个 4 螺旋拓扑结构,而不管靶向的膜如何,这在部分上可以通过应用基于 GFP 的自我组装拓扑结构方法在体内得到证实。通过相同的方法,我们表明定位于内膜的 Tic20 蛋白将其 C 末端暴露给叶绿体基质。考虑到所讨论的基质易位中间物,这种定位将与正内部规则一致。