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哺乳动物线粒体中滑动错配的体内和体外证据。

In vivo and in vitro evidence for slipped mispairing in mammalian mitochondria.

作者信息

Madsen C S, Ghivizzani S C, Hauswirth W W

机构信息

Department of Immunology and Medical Microbiology, University of Florida, Gainesville 32610.

出版信息

Proc Natl Acad Sci U S A. 1993 Aug 15;90(16):7671-5. doi: 10.1073/pnas.90.16.7671.

Abstract

Slipped mispairing between repeated sequences during DNA replication is an important mutagenic event. It is one of several suggested mechanisms thought to be responsible for generating polymorphic regions and large-scale deletions found in mammalian mitochondrial DNA. In the porcine mitochondrial genome, a domain carrying a 10-bp tandemly repeated sequence displays a unique in vivo pattern of repeat copy number polymorphs. Upon passage in Escherichia coli, a recombinant plasmid containing this domain also displays a unique polymorphic pattern that is different from that seen in the animal. To test the hypothesis that these polymorphisms were slippage induced and that the different polymorphic patterns reflected differences in modes of replication, we performed a series of in vitro primer extension reactions. By utilizing either single- or double-stranded templates containing the repeat domain we were able to correlate in vitro generated repeat polymorphism patterns with those seen in the mitochondria or the bacteria, respectively, thus providing experimental evidence that slippage replication is responsible for a major class of mammalian mutations.

摘要

DNA复制过程中重复序列间的错配滑移是一个重要的诱变事件。它是几种被认为与哺乳动物线粒体DNA中多态性区域和大规模缺失产生有关的机制之一。在猪线粒体基因组中,一个携带10个碱基对串联重复序列的结构域呈现出独特的体内重复拷贝数多态性模式。在大肠杆菌中传代时,含有该结构域的重组质粒也呈现出一种独特的多态性模式,与在动物体内观察到的不同。为了验证这些多态性是由滑移诱导产生的,且不同的多态性模式反映了复制模式差异这一假设,我们进行了一系列体外引物延伸反应。通过使用含有重复结构域的单链或双链模板,我们能够分别将体外产生的重复多态性模式与在线粒体或细菌中观察到的模式相关联,从而提供了实验证据,证明滑移复制是哺乳动物一类主要突变的原因。

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