FinMIT Centre of Excellence, Institute of Medical Technology and Tampere University Hospital, University of Tampere, Tampere 33014 TAY, Finland.
IUBMB Life. 2010 Jan;62(1):19-32. doi: 10.1002/iub.282.
Various proteins involved in replication, repair, and the structural organization of mitochondrial DNA (mtDNA) have been characterized in detail over the past 25 or so years. In addition, in recent years, many proteins were identified with a role in the dynamics of the mitochondrial network. Using advanced imaging and an increasing number of cytological techniques, we have begun to realize that an important aspect to mtDNA maintenance, in both health and disease, is its organization within the dynamic mitochondrial network in discrete protein-DNA complexes usually termed nucleoids. Here, I review recent developments in the study of nucleoid dynamics and proteins. I will discuss the implications of the organization of mtDNA in nucleoids in light of DNA replication, repair, gene expression, segregation, and inheritance.
在过去的 25 年左右的时间里,已经详细描述了涉及复制、修复和线粒体 DNA(mtDNA)结构组织的各种蛋白质。此外,近年来,许多具有线粒体网络动态作用的蛋白质已被鉴定出来。通过先进的成像技术和越来越多的细胞学技术,我们开始意识到,mtDNA 的维持,无论是在健康还是疾病中,一个重要的方面是其在动态线粒体网络中的组织,通常在离散的蛋白质-DNA 复合物中称为核小体。在这里,我将回顾核小体动力学和蛋白质研究的最新进展。我将根据 DNA 复制、修复、基因表达、分离和遗传来讨论 mtDNA 在核小体中的组织的意义。