Earnshaw W C, Honda B M, Laskey R A, Thomas J O
Cell. 1980 Sep;21(2):373-83. doi: 10.1016/0092-8674(80)90474-2.
We analyze the nucleosome core assembly reaction which is mediated in vitro by a protein previously purified from Xenopus laevis eggs, now named nucleoplasmin in reference to its occurrence in the soluble phase of the nucleus of a wide range of vertebrate cell types. Nucleoplasmin is present in solution as a pentamer. We use nuclease digestion analysis to show that the protein assembles bona fide nucleosome cores in vitro from purified histones and DNA. Nucleoplasmin itself binds neither to DNA nor to the nucleoprotein particles which it assembles in vitro. However, it interacts with histones in vitro in such a way that histones no longer adhere to negatively charged surfaces. We have found no evidence for sterically specific interactions with particular histones. The initial rate of the nucleosome core assembly reaction mediated by purified nucleoplasmin in vitro is essentially identical with the rate of the nucleosome assembly reaction which occurs in the cell-free extracts of Xenopus eggs from which nucleoplasmin was purified. This rate is sufficient to account for the rate of nucleosome assembly required during the early development of Xenopus embryos.
我们分析了核小体核心组装反应,该反应在体外由一种先前从非洲爪蟾卵中纯化的蛋白质介导,鉴于其在多种脊椎动物细胞类型细胞核的可溶性相中存在,现在将其命名为核质蛋白。核质蛋白在溶液中以五聚体形式存在。我们使用核酸酶消化分析来表明该蛋白质在体外从纯化的组蛋白和DNA组装出真正的核小体核心。核质蛋白本身既不与DNA结合,也不与它在体外组装的核蛋白颗粒结合。然而,它在体外与组蛋白相互作用,使得组蛋白不再附着于带负电荷的表面。我们没有发现与特定组蛋白存在空间特异性相互作用的证据。由纯化的核质蛋白在体外介导的核小体核心组装反应的初始速率与从中纯化出核质蛋白的非洲爪蟾卵无细胞提取物中发生的核小体组装反应速率基本相同。该速率足以解释非洲爪蟾胚胎早期发育过程中所需的核小体组装速率。