Patterton D, Hapgood J
Department of Biochemistry, University of Cape Town, Rondebosch, South Africa.
Mol Cell Biol. 1994 Feb;14(2):1410-8. doi: 10.1128/mcb.14.2.1410-1418.1994.
We have elsewhere reported the purification of a poly(dG).poly(dC)-binding nuclear protein (suGF1) from sea urchin embryos (J. Hapgood and D. Patterton, Mol. Cell. Biol. 14:this issue, 1994). We proposed that suGF1 may be a member of a family of G-string factors involved in developmental gene regulation, possibly via alterations in chromatin structure. In this article, we characterize the binding of purified suGF1 to 11 contiguous Gs in the H1-H4 intergenic region of a sea urchin early histone gene battery in vitro. It is shown that suGF1-DNA binding is dependent on ionic strength and requires divalent cations. Purified suGF1 forms discrete protein-DNA multimers, consistent with suGF1-suGF1 interactions. In a model for the suGF1-DNA complex derived from our footprinting and methylation interference data, suGF1 contacts the Gs in the major groove as well as one of the bordering phosphate backbones. The data are consistent with the direction of curvature of the DNA in the suGF1-DNA complex being the same as that preferred by the free DNA and exhibited by the DNA when bent around a positioned nucleosome core in vitro. However, on the basis of steric considerations, the binding of suGF1 and that of the histone octamer are predicted to be mutually exclusive. We show that suGF1 is indeed unable to bind to the G string when occupied by a histone octamer located in the major in vitro positioning frame in the H1-H4 intergenic region.
我们曾在其他地方报道过从海胆胚胎中纯化出一种聚(dG).聚(dC)结合核蛋白(suGF1)(J. 哈普古德和D. 帕特顿,《分子细胞生物学》14卷:本期,1994年)。我们提出suGF1可能是参与发育基因调控的G串因子家族的一员,可能是通过染色质结构的改变来实现。在本文中,我们在体外对纯化的suGF1与海胆早期组蛋白基因簇H1 - H4基因间区域中11个连续的G的结合进行了表征。结果表明,suGF1与DNA的结合依赖于离子强度且需要二价阳离子。纯化的suGF1形成离散的蛋白质 - DNA多聚体,这与suGF1 - suGF1相互作用一致。从我们的足迹分析和甲基化干扰数据得出的suGF1 - DNA复合物模型中,suGF1在大沟中与G以及其中一个相邻的磷酸骨架接触。这些数据与suGF1 - DNA复合物中DNA的弯曲方向与游离DNA偏好的方向相同一致,并且在体外围绕定位的核小体核心弯曲时DNA也呈现出该方向。然而,基于空间位阻考虑,预计suGF1的结合与组蛋白八聚体的结合是相互排斥的。我们表明,当H1 - H4基因间区域的主要体外定位框架中存在组蛋白八聚体时,suGF1确实无法与G串结合。