Department of Cell Biology, Harvard Medical School, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2013 May 21;110(21):8495-500. doi: 10.1073/pnas.1300126110. Epub 2013 May 6.
The regulated binding of effector proteins to the nucleosome plays a central role in the activation and silencing of eukaryotic genes. How this binding changes the properties of chromatin to mediate gene activation or silencing is not fully understood. Here we provide evidence that association of the budding yeast silent information regulator 3 (Sir3) silencing protein with the nucleosome induces a conformational change in the amino terminus of histone H4 that promotes interactions between the conserved H4 arginines 17 and 19 (R17 and R19) and nucleosomal DNA. Substitutions of H4R17 and R19 with alanine abolish silencing in vivo, but have little or no effect on binding of Sir3 to nucleosomes or histone H4 peptides in vitro. Furthermore, in both the previously reported crystal structure of the Sir3-bromo adjacent homology (BAH) domain bound to the Xenopus laevis nucleosome core particle and the crystal structure of the Sir3-BAH domain bound to the yeast nucleosome core particle described here, H4R17 and R19 make contacts with nucleosomal DNA rather than with Sir3. These results suggest that Sir3 binding generates a more stable nucleosome by clamping H4R17 and R19 to nucleosomal DNA, and raise the possibility that such induced changes in histone-DNA contacts play major roles in the regulation of chromatin structure.
效应蛋白与核小体的调节结合在真核基因的激活和沉默中起着核心作用。这种结合如何改变染色质的性质来介导基因激活或沉默,目前还不完全清楚。在这里,我们提供的证据表明,酿酒酵母沉默信息调节因子 3(Sir3)沉默蛋白与核小体的关联诱导组蛋白 H4 氨基末端发生构象变化,从而促进保守的 H4 精氨酸 17 和 19(R17 和 R19)与核小体 DNA 之间的相互作用。用丙氨酸取代 H4R17 和 R19 会在体内完全消除沉默,但对 Sir3 与核小体或组蛋白 H4 肽的体外结合几乎没有影响。此外,在先前报道的 Sir3-溴相邻同源(BAH)结构域与非洲爪蟾核小体核心颗粒结合的晶体结构和这里描述的 Sir3-BAH 结构域与酵母核小体核心颗粒结合的晶体结构中,H4R17 和 R19 与核小体 DNA 而不是 Sir3 接触。这些结果表明,Sir3 结合通过将 H4R17 和 R19 夹在核小体 DNA 上来产生更稳定的核小体,并提出这样的诱导变化可能在染色质结构的调节中发挥主要作用。