Graduate School of Science and Engineering, Tokyo Metropolitan University, 1-1 Minamiosawa Hachioji 192-0397, Japan.
Institute of Microbial Chemistry, Tokyo 3-14-23 Kamiosaki, Shinagawa-ku 141-0021, Japan.
Structure. 2014 Jan 7;22(1):35-46. doi: 10.1016/j.str.2013.10.007. Epub 2013 Nov 21.
The transcriptional corepressors SMRT/NCoR, components of histone deacetylase complexes, interact with nuclear receptors and many other transcription factors. SMRT is a target for the ubiquitously expressed protein kinase CK2, which is known to phosphorylate a wide variety of substrates. Increasing evidence suggests that CK2 plays a regulatory role in many cellular events, particularly, in transcription. However, little is known about the precise mode of action involved. Here, we report the three-dimensional structure of a SMRT/HDAC1-associated repressor protein (SHARP) in complex with phosphorylated SMRT, as determined by solution NMR. Phosphorylation of the CK2 site on SMRT significantly increased affinity for SHARP. We also confirmed the significance of CK2 phosphorylation by reporter assay and propose a mechanism involving the process of phosphorylation acting as a molecular switch. Finally, we propose that the SPOC domain functions as a phosphorylation binding module.
转录核心抑制因子 SMRT/NCoR 是组蛋白去乙酰化酶复合物的组成部分,与核受体和许多其他转录因子相互作用。SMRT 是广泛表达的蛋白激酶 CK2 的靶标,CK2 已知可磷酸化多种底物。越来越多的证据表明,CK2 在许多细胞事件中发挥调节作用,特别是在转录中。然而,对于涉及的精确作用模式知之甚少。在这里,我们通过溶液 NMR 确定了与磷酸化 SMRT 结合的 SMRT/HDAC1 相关抑制蛋白 (SHARP) 的三维结构。SMRT 上 CK2 位点的磷酸化显著增加了与 SHARP 的亲和力。我们还通过报告基因检测证实了 CK2 磷酸化的重要性,并提出了一种涉及磷酸化作为分子开关的作用机制。最后,我们提出 SPOC 结构域作为磷酸化结合模块发挥作用。