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野生型和小菌落酵母的核DNA和线粒体DNA:环状结构、长度及浮力密度

Nuclear and mitochondrial DNA from wild-type and petite yeast: circularity, length, and buoyant density.

作者信息

Billheimer F E, Avers C J

出版信息

Proc Natl Acad Sci U S A. 1969 Oct;64(2):739-46. doi: 10.1073/pnas.64.2.739.

Abstract

Purified mitochondrial and nuclear DNA from diploid isogenic wild-type and vegetative-petite baker's yeast were analyzed by electron microscopy and by analytical ultracentrifugation in CsCl gradients. The buoyant densities in CsCl of nuclear DNA were identical for the two strains (rho = 1.700), but there was a difference between mitochondrial DNA from the wild type (rho = 1.684) and the petite (rho = 1.680). Electron microscopy revealed both circular and linear filaments for nuclear and for mitochondrial DNA of both strains. Nuclear DNA molecules included 6.5 per cent cyclic filaments principally measuring 2 mu or less in contour length, and linear filaments showing a unimodal, disperse length-distribution centered at about 2 to 3 mu, for both strains. Mitochondrial DNA for wild type varied depending upon the method used to extract and purify the molecules; showing only 7.5 per cent circular molecules from CsCl-subfractionated samples, as compared with 15 per cent circles from chloroform-extracted DNA not subjected to CsCl and up to 50 per cent circles from osmotically-lysed mitochondira, as reported in an earlier study. Modal lengths of circles occurred at about 2, 5, and 10 mu Increasing shear degradation also was evident in comparisons of the length-distribution patterns of linear molecules using the three preparative methods. Petite mitochondrial DNA contained 36-38 per cent circular molecules which measured 0.3-5.3 mu, but principally in the range of 0.3 to 2.0 mu whether from chloroform-extracted populations or from ones subfractionated in CsCl. A previous study of osmotically lysed mitochondria had shown a maximum of 8 per cent circles, which we now attribute to a failure, at that time, to detect circles measuring less than 1 mu, a substantial component encountered in the purified DNA samples in the present study. Linear filaments presented a unimodal length distribution in every case. Despite the variation in molecule populations derived from the three different preparative methods, there were consistent differences between mitochondrial DNA from wild-type and petite yeast in frequencies and size of circular molecules, as well as in length distribution patterns.

摘要

通过电子显微镜以及在氯化铯梯度中的分析超速离心法,对来自二倍体同基因野生型和营养型小菌落面包酵母的纯化线粒体DNA和核DNA进行了分析。两种菌株核DNA在氯化铯中的浮力密度相同(ρ = 1.700),但野生型线粒体DNA(ρ = 1.684)与小菌落线粒体DNA(ρ = 1.680)之间存在差异。电子显微镜显示,两种菌株的核DNA和线粒体DNA均有环状和线性细丝。两种菌株的核DNA分子均包含6.5%的环状细丝,其轮廓长度主要为2μm或更短,线性细丝的长度分布呈单峰、分散状,中心长度约为2至3μm。野生型线粒体DNA因提取和纯化分子的方法不同而有所差异;氯化铯亚分级样品中仅显示7.5%的环状分子,相比之下,未经过氯化铯处理的氯仿提取DNA中有15%的环状分子,而如早期研究所报道,渗透压裂解线粒体中有高达50%的环状分子。使用三种制备方法对线性分子的长度分布模式进行比较时,也明显发现环状分子的模式长度出现在约2、5和10μm处,剪切降解增加。小菌落线粒体DNA包含36 - 38%的环状分子,其长度为0.3 - 5.3μm,但无论是来自氯仿提取的群体还是氯化铯亚分级的群体,主要长度范围为0.3至2.0μm。先前对渗透压裂解线粒体的研究显示,环状分子最多为8%,我们现在认为这是当时未能检测到长度小于1μm的环状分子所致,而在本研究的纯化DNA样品中,这是一个相当大的组成部分。线性细丝在每种情况下均呈现单峰长度分布。尽管来自三种不同制备方法的分子群体存在差异,但野生型和小菌落酵母的线粒体DNA在环状分子的频率和大小以及长度分布模式方面存在一致的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f12f/223406/388269987e67/pnas00112-0331-a.jpg

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