Singh Nameirakpam Dolendro, Li Ming, Lee Sueng-Bum, Schnell Danny, Daniell Henry
Department of Molecular Biology and Microbiology, College of Medicine, University of Central Florida, Orlando, Florida 32816-2364, USA.
Plant Cell. 2008 Dec;20(12):3405-17. doi: 10.1105/tpc.108.063172. Epub 2008 Dec 5.
The chloroplast inner envelope membrane (IM) plays essential roles in lipid synthesis, metabolite transport, and cellular signaling in plants. We have targeted a model nucleus-encoded IM protein from Arabidopsis thaliana, pre-Tic40-His, by relocating its expression from the nucleus to the chloroplast genome. Pre-Tic40-His was properly targeted, processed, and inserted. It attained correct topology and was folded and assembled into a TIC complex, where it accounted for up to 15% of the total chloroplast protein. These results confirm the existence of a novel pathway for protein targeting to the IM. Tic40-His overexpression resulted in a massive proliferation of the IM (up to 19 layers in electron micrographs) without significant effects on plant growth or reproduction. Consistent with IM proliferation, the expression levels of other endogenous IM proteins (IEP37, PPT, Tic110) were significantly (10-fold) upregulated but those of outer envelope membrane (Toc159), stromal (hsp93, cpn60), or thylakoid (LHCP, OE23) proteins were not increased, suggesting retrograde signal transduction between chloroplast and nuclear genomes to increase lipid and protein components for accommodation of increased accumulation of Tic40. This study opens the door for understanding the regulation of membrane biogenesis within the organelle and the utilization of transgenic chloroplasts as bioreactors for hyperaccumulation of membrane proteins for biotechnological applications.
叶绿体内膜(IM)在植物的脂质合成、代谢物运输和细胞信号传导中发挥着重要作用。我们通过将拟南芥中一种模型核编码的IM蛋白前体Tic40-His的表达从细胞核转移到叶绿体基因组,对其进行了靶向研究。前体Tic40-His被正确靶向、加工并插入。它获得了正确的拓扑结构,并折叠组装成一个TIC复合体,在该复合体中它占叶绿体总蛋白的比例高达15%。这些结果证实了存在一种新的蛋白质靶向内膜的途径。Tic40-His的过表达导致内膜大量增殖(在电子显微镜下多达19层),而对植物生长或繁殖没有显著影响。与内膜增殖一致,其他内源性内膜蛋白(IEP37、PPT、Tic110)的表达水平显著上调(10倍),但外膜(Toc159)、基质(hsp93、cpn60)或类囊体(LHCP、OE23)蛋白的表达水平没有增加,这表明叶绿体和核基因组之间存在逆行信号转导,以增加脂质和蛋白质成分,以适应Tic40积累的增加。这项研究为理解细胞器内膜生物发生的调控以及利用转基因叶绿体作为生物反应器超积累膜蛋白用于生物技术应用打开了大门。