Georgel P T, Palacios DeBeer M A, Pietz G, Fox C A, Hansen J C
Department of Biochemistry, University of Texas Health Science Center, San Antonio, TX 78229-3900, USA.
Proc Natl Acad Sci U S A. 2001 Jul 17;98(15):8584-9. doi: 10.1073/pnas.151258798. Epub 2001 Jul 10.
Baculovirus-expressed recombinant Sir3p (rSir3p) has been purified to near homogeneity, and its binding to naked DNA, mononucleosomes, and nucleosomal arrays has been characterized in vitro. At stoichiometric levels rSir3p interacts with intact nucleosomal arrays, mononucleosomes, and naked DNA, as evidenced by formation of supershifted species on native agarose gels. Proteolytic removal of the core histone tail domains inhibits but does not completely abolish rSir3p binding to nucleosomal arrays. The linker DNA in the supershifted complexes remains freely accessible to restriction endonuclease digestion, suggesting that both the tail domains and nucleosomal DNA contribute to rSir3p--chromatin interactions. Together these data indicate that rSir3p cross-links individual nucleosomal arrays into supramolecular assemblies whose physical properties transcend those of typical 10-nm and 30-nm fibers. Based on these data we hypothesize that Sir3p functions, at least in part, by mediating reorganization of the canonical chromatin fiber into functionally specialized higher order chromosomal domains.
杆状病毒表达的重组Sir3p(rSir3p)已被纯化至接近均一,并且其与裸露DNA、单核小体和核小体阵列的结合已在体外进行了表征。在化学计量水平上,rSir3p与完整的核小体阵列、单核小体和裸露DNA相互作用,如在天然琼脂糖凝胶上形成超迁移条带所证明的那样。核心组蛋白尾部结构域的蛋白酶解去除抑制但并未完全消除rSir3p与核小体阵列的结合。超迁移复合物中的连接DNA仍然可被限制性内切酶自由切割,这表明尾部结构域和核小体DNA都对rSir3p - 染色质相互作用有贡献。这些数据共同表明,rSir3p将单个核小体阵列交联成超分子组装体,其物理性质超越了典型的10纳米和30纳米纤维。基于这些数据,我们假设Sir3p至少部分地通过介导经典染色质纤维重组成功能特化的高阶染色体结构域来发挥作用。