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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Calcium/calmodulin-dependent protein kinase IV (CaMKIV) enhances osteoclast differentiation via the up-regulation of Notch1 protein stability
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Calcium/calmodulin-dependent protein kinase IV (CaMKIV) enhances osteoclast differentiation via the up-regulation of Notch1 protein stability

机译:钙/钙调蛋白依赖性蛋白激酶IV(CaMKIV)通过上调Notch1蛋白稳定性来增强破骨细胞分化

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摘要

The Notch signaling pathway plays a crucial role in the regulation of cell fate decision, and is also a key regulator of cell differentiation, including bone homeostasis, in a variety of contexts. However, the role of Notch1 signaling in osteoclast differentiation is still controversial. In this study, we show that Receptor activator of nuclear factor kappa-B ligand (RANKL)-induced osteoclast differentiation is promoted by the Notch1 intracellular domain (Notch1-IC) and Ca2+/Calmodulin dependent protein kinase IV (CaMKIV) signaling. Notch1-IC protein level was augmented by CaMKIV through escape from ubiquitin dependent protein degradation. In addition, CaMKIV remarkably increased Notch1-IC stability, and the kinase activity of CaMKIV was essential for facilitating Notch1 signaling. CaMKIV directly interacted with Notch1-IC and phosphorylates Notch1-IC, thereby decreasing proteasomal protein degradation through F-box and WD repeat domain-containing 7 (Fbw7). We also found that Notch1-IC prevented inhibition of osteoclast differentiation by KN-93 but not the phosphorylation deficient form of Notch1-IC. These results suggest that phosphorylated Notch1-IC by CaMKIV increases Notch1-IC stability, which enhances osteoclast differentiation.
机译:在多种情况下,Notch信号通路在调节细胞命运的决定中起着至关重要的作用,并且在包括骨稳态在内的细胞分化中也起着关键的调节作用。但是,Notch1信号在破骨细胞分化中的作用仍存在争议。在这项研究中,我们表明,Notch1细胞内结构域(Notch1-IC)和Ca2 + /钙调蛋白依赖性蛋白激酶IV(CaMKIV)信号传导促进了核因子kappa-B配体(RANKL)诱导的破骨细胞分化的受体激活剂。 CaMKIV通过逃避泛素依赖性蛋白降解来提高Notch1-IC蛋白水平。另外,CaMKIV显着增加了Notch1-IC的稳定性,并且CaMKIV的激酶活性对于促进Notch1信号传导至关重要。 CaMKIV直接与Notch1-IC相互作用并磷酸化Notch1-IC,从而通过包含F-box和WD重复域的7(Fbw7)减少蛋白酶体蛋白质的降解。我们还发现Notch1-IC阻止了KN-93对破骨细胞分化的抑制,但没有阻止Notch1-IC的磷酸化缺陷形式。这些结果表明,CaMKIV磷酸化的Notch1-IC可增加Notch1-IC的稳定性,从而增强破骨细胞的分化。

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