Powikrowska Marta, Oetke Svenja, Jensen Poul E, Krupinska Karin
Department of Plant and Environmental Sciences, VILLUM Research Centre for Plant Plasticity and Copenhagen Plant Science Centre, University of Copenhagen Copenhagen, Denmark.
Plant Cell Biology, Institute of Botany, Christian-Albrechts-University of Kiel Kiel, Germany.
Front Plant Sci. 2014 Sep 4;5:424. doi: 10.3389/fpls.2014.00424. eCollection 2014.
In this article recent progress on the elucidation of the dynamic composition and structure of plastid nucleoids is reviewed from a structural perspective. Plastid nucleoids are compact structures of multiple copies of different forms of ptDNA, RNA, enzymes for replication and gene expression as well as DNA binding proteins. Although early electron microscopy suggested that plastid DNA is almost free of proteins, it is now well established that the DNA in nucleoids similarly as in the nuclear chromatin is associated with basic proteins playing key roles in organization of the DNA architecture and in regulation of DNA associated enzymatic activities involved in transcription, replication, and recombination. This group of DNA binding proteins has been named plastid nucleoid associated proteins (ptNAPs). Plastid nucleoids are unique with respect to their variable number, genome copy content and dynamic distribution within different types of plastids. The mechanisms underlying the shaping and reorganization of plastid nucleoids during chloroplast development and in response to environmental conditions involve posttranslational modifications of ptNAPs, similarly to those changes known for histones in the eukaryotic chromatin, as well as changes in the repertoire of ptNAPs, as known for nucleoids of bacteria. Attachment of plastid nucleoids to membranes is proposed to be important not only for regulation of DNA availability for replication and transcription, but also for the coordination of photosynthesis and plastid gene expression.
本文从结构角度综述了质体类核动态组成和结构解析方面的最新进展。质体类核是由不同形式的质体DNA(ptDNA)、RNA、复制及基因表达相关酶以及DNA结合蛋白的多个拷贝组成的致密结构。尽管早期电子显微镜观察表明质体DNA几乎不含蛋白质,但现在已明确,类核中的DNA与核染色质中的DNA一样,与在DNA结构组织以及转录、复制和重组中涉及的DNA相关酶活性调控中起关键作用的碱性蛋白质相关联。这组DNA结合蛋白被命名为质体类核相关蛋白(ptNAPs)。质体类核在不同类型质体内的数量可变、基因组拷贝含量以及动态分布方面具有独特性。叶绿体发育过程中以及响应环境条件时,质体类核的形成和重组机制涉及ptNAPs的翻译后修饰,类似于真核染色质中组蛋白的那些变化,以及ptNAPs种类的变化,类似于细菌类核的情况。质体类核与膜的附着被认为不仅对复制和转录时DNA的可利用性调控很重要,而且对光合作用和质体基因表达的协调也很重要。