Hensen Fenna, Cansiz Sirin, Gerhold Joachim M, Spelbrink Johannes N
Department of Pediatrics, Nijmegen Centre for Mitochondrial Disorders, Radboud University Nijmegen Medical Centre, Geert Grooteplein 10, P.O. Box 9101, 6500 HB Nijmegen, The Netherlands.
Department of Pediatrics, Nijmegen Centre for Mitochondrial Disorders, Radboud University Nijmegen Medical Centre, Geert Grooteplein 10, P.O. Box 9101, 6500 HB Nijmegen, The Netherlands; Institute of Biomedical Technology & Tampere University Hospital, Pirkanmaa Hospital District, University of Tampere, FI-33014, Finland.
Biochimie. 2014 May;100:219-26. doi: 10.1016/j.biochi.2013.09.017. Epub 2013 Sep 25.
In the last decade it has become increasingly clear that mitochondrial DNA (mtDNA) is not naked but associated with proteins in poorly defined structures called nucleoids that are essential for mtDNA maintenance. The function of nucleoids is not simply to package mtDNA but also to provide a stable environment for its replication, transcription and repair. Even though their properties and dynamics have begun to be revealed in recent years, their structural and molecular organization remains largely unknown in mammals. Although, there are a number of proteins identified to be nucleoid associated by using several biochemical isolation methods combined with mass spectrometric analysis, the main difficulties in the identification of these proteins are their low abundance and the assumed dynamic composition of nucleoids. Considering various purification methods, there is a thin line between the stringency and specificity in the identification of potential nucleoid associated proteins. In this review, the main focus is to provide a comprehensive comparison of the so far published purification and analysis methods to generate a list of potentially nucleoid associated proteins, but also, to discuss the disadvantages and possible improvements in proteomic analyses.
在过去十年中,越来越清楚的是,线粒体DNA(mtDNA)并非裸露存在,而是与蛋白质结合在一种定义不明确的结构中,这种结构称为类核,对mtDNA的维持至关重要。类核的功能不仅是包装mtDNA,还为其复制、转录和修复提供稳定的环境。尽管近年来它们的特性和动态变化已开始被揭示,但在哺乳动物中,它们的结构和分子组织在很大程度上仍然未知。虽然通过几种生化分离方法结合质谱分析已鉴定出许多与类核相关的蛋白质,但鉴定这些蛋白质的主要困难在于它们的低丰度以及类核假定的动态组成。考虑到各种纯化方法,在鉴定潜在的类核相关蛋白质时,严格性和特异性之间的界限很细微。在这篇综述中,主要重点是对迄今为止已发表的纯化和分析方法进行全面比较,以生成一份潜在的类核相关蛋白质清单,同时也讨论蛋白质组学分析中的缺点和可能的改进。