Olinares Paul Dominic B, Kim Jitae, van Wijk Klaas J
Department of Plant Biology, Cornell University, Ithaca, NY 14853, USA.
Biochim Biophys Acta. 2011 Aug;1807(8):999-1011. doi: 10.1016/j.bbabio.2010.12.003. Epub 2010 Dec 15.
Intra-plastid proteases play crucial and diverse roles in the development and maintenance of non-photosynthetic plastids and chloroplasts. Formation and maintenance of a functional thylakoid electron transport chain requires various protease activities, operating in parallel, as well as in series. This review first provides a short, referenced overview of all experimentally identified plastid proteases in Arabidopsis thaliana. We then focus on the Clp protease system which constitutes the most abundant and complex soluble protease system in the plastid, consisting of 15 nuclear-encoded members and one plastid-encoded member in Arabidopsis. Comparisons to the simpler Clp system in photosynthetic and non-photosynthetic bacteria will be made and the role of Clp proteases in the green algae Chlamydomonas reinhardtii will be briefly reviewed. Extensive molecular genetics has shown that the Clp system plays an essential role in Arabidopsis chloroplast development in the embryo as well as in leaves. Molecular characterization of the various Clp mutants has elucidated many of the consequences of loss of Clp activities. We summarize and discuss the structural and functional aspects of the Clp machinery, including progress on substrate identification and recognition. Finally, the Clp system will be evaluated in the context of the chloroplast protease network. This article is part of a Special Issue entitled: Regulation of Electron Transport in Chloroplasts.
质体内蛋白酶在非光合质体和叶绿体的发育与维持过程中发挥着关键且多样的作用。功能性类囊体电子传递链的形成与维持需要多种蛋白酶活性协同作用,既有并行的,也有串行的。本综述首先对拟南芥中所有经实验鉴定的质体蛋白酶进行简短的、有参考文献的概述。接着,我们将重点关注Clp蛋白酶系统,它是质体中最丰富、最复杂的可溶性蛋白酶系统,在拟南芥中由15个核编码成员和1个质体编码成员组成。我们将与光合细菌和非光合细菌中较为简单的Clp系统进行比较,并简要回顾Clp蛋白酶在莱茵衣藻中的作用。广泛的分子遗传学研究表明,Clp系统在拟南芥胚胎及叶片的叶绿体发育中起着至关重要的作用。对各种Clp突变体的分子特征分析阐明了Clp活性丧失的许多后果。我们总结并讨论了Clp机制的结构和功能方面,包括底物鉴定和识别的进展。最后,将在叶绿体蛋白酶网络的背景下对Clp系统进行评估。本文是名为“叶绿体中电子传递的调控”的特刊的一部分。