Campbell Christopher T, Kolesar Jill E, Kaufman Brett A
Department of Animal Biology, University of Pennsylvania School of Veterinary Medicine, Philadelphia, PA 19104, USA.
Biochim Biophys Acta. 2012 Sep-Oct;1819(9-10):921-9. doi: 10.1016/j.bbagrm.2012.03.002. Epub 2012 Mar 21.
Mitochondrial transcription factor A (mtTFA, mtTF1, TFAM) is an essential protein that binds mitochondrial DNA (mtDNA) with and without sequence specificity to regulate both mitochondrial transcription initiation and mtDNA copy number. The abundance of mtDNA generally reflects TFAM protein levels; however, the precise mechanism(s) by which this occurs remains a matter of debate. Data suggest that the usage of mitochondrial promoters is regulated by TFAM dosage, allowing TFAM to affect both gene expression and RNA priming for first strand mtDNA replication. Additionally, TFAM has a non-specific DNA binding activity that is both cooperative and high affinity. TFAM can compact plasmid DNA in vitro, suggesting a structural role for the non-specific DNA binding activity in genome packaging. This review summarizes TFAM-mtDNA interactions and describes an emerging view of TFAM as a multipurpose coordinator of mtDNA transactions, with direct consequences for the maintenance of gene expression and genome copy number. This article is part of a Special Issue entitled: Mitochondrial Gene Expression.
线粒体转录因子A(mtTFA、mtTF1、TFAM)是一种重要蛋白质,它能以序列特异性或非序列特异性方式结合线粒体DNA(mtDNA),从而调控线粒体转录起始和mtDNA拷贝数。mtDNA的丰度通常反映TFAM蛋白水平;然而,其发生的确切机制仍存在争议。数据表明,线粒体启动子的使用受TFAM剂量调控,使得TFAM能够影响基因表达以及第一链mtDNA复制的RNA引发。此外,TFAM具有兼具协同性和高亲和力的非特异性DNA结合活性。TFAM能在体外使质粒DNA压缩,这表明非特异性DNA结合活性在基因组包装中具有结构作用。本综述总结了TFAM与mtDNA的相互作用,并描述了一种新出现的观点,即TFAM作为mtDNA事务的多功能协调者,对基因表达维持和基因组拷贝数具有直接影响。本文是名为“线粒体基因表达”的特刊的一部分。