Laboratory of Structural Biology, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, NC 27709;
Department of Biological Sciences, Columbia University, New York, NY 10027;
Proc Natl Acad Sci U S A. 2014 Jul 22;111(29):E2937-46. doi: 10.1073/pnas.1406381111. Epub 2014 Jul 7.
Replication-dependent histone mRNAs end with a conserved stem loop that is recognized by stem-loop-binding protein (SLBP). The minimal RNA-processing domain of SLBP is phosphorylated at an internal threonine, and Drosophila SLBP (dSLBP) also is phosphorylated at four serines in its 18-aa C-terminal tail. We show that phosphorylation of dSLBP increases RNA-binding affinity dramatically, and we use structural and biophysical analyses of dSLBP and a crystal structure of human SLBP phosphorylated on the internal threonine to understand the striking improvement in RNA binding. Together these results suggest that, although the C-terminal tail of dSLBP does not contact the RNA, phosphorylation of the tail promotes SLBP conformations competent for RNA binding and thereby appears to reduce the entropic penalty for the association. Increased negative charge in this C-terminal tail balances positively charged residues, allowing a more compact ensemble of structures in the absence of RNA.
复制依赖性组蛋白 mRNA 的 3'端带有一段保守的茎环结构,该结构可被茎环结合蛋白(SLBP)识别。SLBP 的最小 RNA 加工结构域在内部苏氨酸处发生磷酸化,果蝇 SLBP(dSLBP)的 18 个氨基酸 C 末端尾部也有四个丝氨酸发生磷酸化。我们发现 dSLBP 的磷酸化极大地增加了 RNA 结合亲和力,我们通过对 dSLBP 的结构和生物物理分析以及对人 SLBP 内部苏氨酸磷酸化的晶体结构的研究,来理解 RNA 结合能力的显著提高。这些结果表明,尽管 dSLBP 的 C 末端尾部不与 RNA 接触,但尾部的磷酸化促进了 SLBP 形成具有 RNA 结合能力的构象,从而似乎降低了结合的熵罚。该 C 末端尾部增加的负电荷平衡了带正电荷的残基,使得在没有 RNA 的情况下,结构的整体更为紧凑。