Department of Orthopedics, The Second Affiliated Hospital of Xi'an Jiaotong University, Xi'an 710005, China.
Department of Orthopaedics, Honghui Hospital, Xi'an Jiaotong University, Xi'an 710054, China.
Mol Cells. 2020 Jun 30;43(6):517-529. doi: 10.14348/molcells.2020.0042.
Carboxyl-terminal binding proteins (CtBPs) are transcription regulators that control gene expression in multiple cellular processes. Our recent findings indicated that overexpression of caused the repression of multiple bone development and differentiation genes, resulting in atrophic nonunion. Therefore, disrupting the CtBP2-associated transcriptional complex with small molecules may be an effective strategy to prevent nonunion. In the present study, we developed an screening system in yeast cells to identify small molecules capable of disrupting the CtBP2-p300 interaction. Herein, we focus our studies on revealing the and effects of a small molecule NSM00158, which showed the strongest inhibition of the CtBP2-p300 interaction . Our results indicated that NSM00158 could specifically disrupt CtBP2 function and cause the disassociation of the CtBP2-p300-Runx2 complex. The impairment of this complex led to failed binding of Runx2 to its downstream targets, causing their upregulation. Using a mouse fracture model, we evaluated the effect of NSM00158 on preventing nonunion. Consistent with the results, the NSM00158 treatment resulted in the upregulation of Runx2 downstream targets. Importantly, we found that the administration of NSM00158 could prevent the occurrence of nonunion. Our results suggest that NSM00158 represents a new potential compound to prevent the occurrence of nonunion by disrupting CtBP2 function and impairing the assembly of the CtBP2-p300-Runx2 transcriptional complex.
羧基末端结合蛋白(CtBPs)是转录调节因子,可控制多种细胞过程中的基因表达。我们最近的研究结果表明,过表达 会抑制多个骨发育和分化基因的表达,导致萎缩性骨不连。因此,用小分子破坏 CtBP2 相关转录复合物可能是预防骨不连的有效策略。在本研究中,我们在酵母细胞中开发了一种 筛选系统,以鉴定能够破坏 CtBP2-p300 相互作用的小分子。在此,我们专注于揭示小分子 NSM00158 的 和 效应,该小分子对 CtBP2-p300 相互作用的抑制作用最强 。我们的结果表明,NSM00158 可以特异性地破坏 CtBP2 的功能并导致 CtBP2-p300-Runx2 复合物解体。该复合物的损伤导致 Runx2 与其下游靶标结合失败,从而导致其上调。使用小鼠骨折模型,我们评估了 NSM00158 预防骨不连的 效应。与 结果一致,NSM00158 处理导致 Runx2 下游靶标的上调。重要的是,我们发现 NSM00158 的给药可以预防骨不连的发生。我们的结果表明,NSM00158 通过破坏 CtBP2 功能和损害 CtBP2-p300-Runx2 转录复合物的组装,代表了一种预防骨不连发生的新的潜在化合物。