McBryant Steven J, Krause Christine, Woodcock Christopher L, Hansen Jeffrey C
Department of Biochemistry and Molecular Biology, Colorado State University, 381 MRB, Fort Collins, CO 80523-1870, USA.
Mol Cell Biol. 2008 Jun;28(11):3563-72. doi: 10.1128/MCB.01389-07. Epub 2008 Mar 24.
The telomeres and mating-type loci of budding yeast adopt a condensed, heterochromatin-like state through recruitment of the silent information regulator (SIR) proteins SIR2p, SIR3p, and SIR4p. In this study we characterize the chromatin binding determinants of recombinant SIR3p and identify how SIR3p mediates chromatin fiber condensation in vitro. Purified full-length SIR3p was incubated with naked DNA, nucleosome core particles, or defined nucleosomal arrays, and the resulting complexes were analyzed by electrophoretic shift assays, sedimentation velocity, and electron microscopy. SIR3p bound avidly to all three types of templates. SIR3p loading onto its nucleosomal sites in chromatin produced thickened condensed fibers that retained a beaded morphology. At higher SIR3p concentrations, individual nucleosomal arrays formed oligomeric suprastructures bridged by SIR3p oligomers. When condensed SIR3p-bound chromatin fibers were incubated in Mg(2+), they folded and oligomerized even further to produce hypercondensed higher-order chromatin structures. Collectively, these results define how SIR3p may function as a chromatin architectural protein and provide new insight into the interplay between endogenous and protein-mediated chromatin fiber condensation pathways.
通过募集沉默信息调节因子(SIR)蛋白SIR2p、SIR3p和SIR4p,芽殖酵母的端粒和交配型基因座呈现出一种浓缩的、异染色质样状态。在本研究中,我们对重组SIR3p的染色质结合决定因素进行了表征,并确定了SIR3p在体外介导染色质纤维浓缩的方式。将纯化的全长SIR3p与裸露DNA、核小体核心颗粒或确定的核小体阵列一起孵育,然后通过电泳迁移率变动分析、沉降速度分析和电子显微镜对所得复合物进行分析。SIR3p能强烈结合所有三种类型的模板。SIR3p加载到染色质中的核小体位点上会产生增厚的浓缩纤维,这些纤维保留了串珠状形态。在较高的SIR3p浓度下,单个核小体阵列形成由SIR3p寡聚体桥接的寡聚超结构。当将与SIR3p结合的浓缩染色质纤维在Mg(2+)中孵育时,它们会进一步折叠并寡聚化,从而产生超浓缩的高阶染色质结构。总的来说,这些结果确定了SIR3p作为染色质结构蛋白的作用方式,并为内源性和蛋白质介导的染色质纤维浓缩途径之间的相互作用提供了新的见解。