Lim S E, Longley M J, Copeland W C
Laboratory of Molecular Genetics, NIEHS, National Institutes of Health, Research Triangle Park, North Carolina 27709, USA.
J Biol Chem. 1999 Dec 31;274(53):38197-203. doi: 10.1074/jbc.274.53.38197.
Human DNA polymerase gamma is composed of a 140-kDa catalytic subunit and a smaller accessory protein variously reported to be 43-54 kDa. Immunoblot analysis of the purified, heterodimeric native human polymerase gamma complex identified the accessory subunit as 55 kDa. We isolated the full-length cDNA encoding a 55-kDa polypeptide, expressed the cDNA in Escherichia coli and purified the 55-kDa protein to homogeneity. Recombinant Hp55 forms a high affinity, salt-stable complex with Hp140 during protein affinity chromatography. Immunoprecipitation, gel filtration, and sedimentation analyses revealed a 190-kDa complex indicative of a native heterodimer. Reconstitution of Hp140.Hp55 raises the salt optimum of Hp140, stimulates the polymerase and exonuclease activities, and increases the processivity of the enzyme by several 100-fold. Similar to Hp140, isolated Hp55 binds DNA with moderate strength and was a specificity for double-stranded primer-template DNA. However, Hp140.Hp55 has a surprisingly high affinity for DNA, and kinetic analyses indicate Hp55 enhances the affinity of Hp140 for primer termini by 2 orders of magnitude. Thus the enhanced DNA binding caused by Hp55 is the basis for the salt tolerance and high processivity characteristic of DNA polymerase gamma. Observation of native DNA polymerase gamma both as an Hp140 monomer and as a heterodimer with Hp55 supports the notion that the two forms act in mitochondrial DNA repair and replication. Additionally, association of Hp55 with Hp140 protects the polymerase from inhibition by N-ethylmaleimide.
人DNA聚合酶γ由一个140 kDa的催化亚基和一个较小的辅助蛋白组成,该辅助蛋白的大小报道不一,为43 - 54 kDa。对纯化的天然人聚合酶γ异二聚体复合物进行免疫印迹分析,确定该辅助亚基为55 kDa。我们分离出编码55 kDa多肽的全长cDNA,在大肠杆菌中表达该cDNA,并将55 kDa的蛋白纯化至同质。在蛋白质亲和层析过程中,重组Hp55与Hp140形成高亲和力、盐稳定的复合物。免疫沉淀、凝胶过滤和沉降分析显示出一个190 kDa的复合物,表明其为天然异二聚体。Hp140.Hp55的重组提高了Hp140的最适盐浓度,刺激了聚合酶和核酸外切酶活性,并使该酶的持续合成能力提高了数百倍。与Hp140相似,分离出的Hp55以中等强度结合DNA,对双链引物模板DNA具有特异性。然而,Hp140.Hp55对DNA具有惊人的高亲和力,动力学分析表明Hp55将Hp140对引物末端的亲和力提高了2个数量级。因此,Hp55引起的DNA结合增强是DNA聚合酶γ耐盐性和高持续合成能力的基础。观察天然DNA聚合酶γ既可以是Hp140单体形式,也可以是与Hp55形成的异二聚体形式,这支持了这两种形式在线粒体DNA修复和复制中起作用的观点。此外,Hp55与Hp140的结合保护聚合酶免受N - 乙基马来酰亚胺的抑制。