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RNA-binding protein Musashi2 induced by RANKL is critical for osteoclast survival

机译:RANKL诱导的RNA结合蛋白质usashi2对于骨果酱生存至关重要

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The Musashi family of RNA-binding proteins, Musashi1 and Musashi2, regulate self-renewal and differentiation of neuronal and hematopoietic stem cells by modulating protein translation. It has been recently reported that Musashi2, not Musashi1, regulates hematopoietic stem cells. Although osteoclasts are derived from hematopoietic cells, the expression and functions of Musashi proteins in osteoclast lineage cells remain unknown. In this study, we have uncovered that Musashi2 is the predominant isoform of Musashi proteins in osteoclast precursors and its expression is upregulated by receptor activator of NF- κ B ligand (RANKL) during osteoclast differentiation. Knocking down the expression of Musashi2 in osteoclast lineage cells by shRNAs attenuates nuclear factor of activated T cells 1 (NFATc1) expression and osteoclast formation in vitro . Mechanistically, loss of Musashi2 inhibits Notch signaling during osteoclast differentiation and induces apoptosis in pre-osteoclasts. In contrast, depletion of Musashi2 has no effects on cell cycle progression and p21WAF-1 protein expression in macrophages. Furthermore, depletion of Notch2 and its downstream target Hes1 in osteoclast precursors by shRNAs abrogates osteoclastogenesis by inhibiting NFATc1. Finally, absence of Musashi2 in osteoclast precursors promotes apoptosis and inhibits RANKL-induced nuclear factor- κ B (NF- κ B) activation, which is essential for osteoclast survival, Thus, Musashi2 is required for cell survival and optimal osteoclastogenesis by affecting Notch signaling and NF- κ B activation.
机译:穆斯塔什系列RNA结合蛋白质,Musashi1和Musashi2,通过调节蛋白翻译调节神经元和造血干细胞的自我更新和分化。最近据报道,Musashi2不是usashi1,调节造血干细胞。虽然骨酸骨质源自造血细胞,但骨液素细胞中肌肉蛋白的表达和功能仍然未知。在这项研究中,我们已经发现,Musashi2是骨液中的脓毒蛋白酶蛋白质的主要同种型,其表达通过在破骨细胞分化期间通过NF-κB配体(RANKL)的受体活化剂来上调。通过SHRNA敲击uSashi2在骨壳谱系细胞中的表达衰减活化T细胞1(NFATC1)表达和体外破骨细胞形成的核因子。机械地,穆斯塔什米损失抑制了骨壳分化期间的缺口信号传导,诱导疏松骨细胞前凋亡中的细胞凋亡。相比之下,穆沙什米的耗尽对巨噬细胞中的细胞周期进展和P21 Waf-1 蛋白表达没有影响。此外,通过抑制NFATC1,通过SHRNA通过SHRNA消除了骨细胞前体中的Notch2及其下游靶标HES1。最后,在破骨细胞前体中缺乏脓疱蟹促进细胞凋亡并抑制RANKL诱导的核因子-κB(NF-κB)活化,这对于骨壳生存期是必不可少的,因此,通过影响缺口信号传导来进行细胞存活和最佳骨质细胞发生所必需的Musashi2是必不可少的和NF-κB激活。

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