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Tankyrase (PARP5) Inhibition Induces Bone Loss through Accumulation of Its Substrate SH3BP2

机译:Tankyrase(PARP5)抑制通过其基质SH3bp2的积累诱导骨损伤

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摘要

There is considerable interest in tankyrase because of its potential use in cancer therapy. Tankyrase catalyzes the ADP-ribosylation of a variety of target proteins and regulates various cellular processes. The anti-cancer effects of tankyrase inhibitors are mainly due to their suppression of Wnt signaling and inhibition of telomerase activity, which are mediated by AXIN and TRF1 stabilization, respectively. In this review, we describe the underappreciated effects of another substrate, SH3 domain-binding protein 2 (SH3BP2). Specifically, SH3BP2 is an adaptor protein that regulates intracellular signaling pathways. Additionally, in the human genetic disorder cherubism, the gain-of-function mutations in SH3BP2 enhance osteoclastogenesis. The pharmacological inhibition of tankyrase in mice induces bone loss through the accumulation of SH3BP2 and the subsequent increase in osteoclast formation. These findings reveal the novel functions of tankyrase influencing bone homeostasis, and imply that tankyrase inhibitor treatments in a clinical setting may be associated with adverse effects on bone mass.
机译:由于其在癌症疗法中潜在使用,对Tankyrase有相当大的兴趣。 Tankyrase催化各种靶蛋白的ADP-核糖基化并调节各种细胞过程。抑制剂的抗癌作用主要是由于它们抑制了Wnt信号传导和对端粒酶活性的抑制,分别由轴轴和TRF1稳定化介导。在本文中,我们描述了另一种底物,SH3结构域结合蛋白2(SH3BP2)的低估效果。具体地,SH3BP2是调节细胞内信号传导途径的适配蛋白。另外,在人类遗传障碍的小生包中,SH3BP2中的功能性突变增强了骨髓细胞发生。通过SH3BP2的积累和随后的破骨细胞形成的增加,小鼠的药理抑制诱导骨质损失。这些发现揭示了水毒酶影响骨稳态的新功能,暗示临床环境中的不良酶抑制剂治疗可能与对骨量的不利影响有关。

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