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首页> 外文期刊>The journal of clinical investigation >Schnurri-3 regulates ERK downstream of WNT signaling in osteoblasts
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Schnurri-3 regulates ERK downstream of WNT signaling in osteoblasts

机译:Schnurri-3调节成骨细胞WNT信号下游的ERK

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Mice deficient in Schnurri-3 (SHN3; also known as HIVEP3) display increased bone formation, but harnessing this observation for therapeutic benefit requires an improved understanding of how SHN3 functions in osteoblasts. Here we identified SHN3 as a dampener of ERK activity that functions in part downstream of WNT signaling in osteoblasts. A D-domain motif within SHN3 mediated the interaction with and inhibition of ERK activity and osteoblast differentiation, and knockin of a mutation in Shn3 that abolishes this interaction resulted in aberrant ERK activation and consequent osteoblast hyperactivity in vivo. Additionally, in vivo genetic interaction studies demonstrated that crossing to Lrp5~(–/–) mice partially rescued the osteosclerotic phenotype of Shn3~(–/–) mice; mechanistically, this corresponded to the ability of SHN3 to inhibit ERK-mediated suppression of GSK3β. Inducible knockdown of Shn3 in adult mice resulted in a high–bone mass phenotype, providing evidence that transient blockade of these pathways in adults holds promise as a therapy for osteoporosis.
机译:缺乏Schnurri-3(SHN3;也称为HIVEP3)的小鼠显示出增加的骨形成,但是利用这一观察结果以获得治疗益处需要对SHN3在成骨细胞中的功能有更好的了解。在这里,我们确定SHN3作为ERK活性的抑制剂,在成骨细胞中WNT信号传导的下游部分起作用。 SHN3中的D结构域介导与ERK活性和成骨细胞分化的相互作用,并抑制ERK活性和成骨细胞的分化,而在Shn3中消除这种相互作用的突变的敲入导致异常的ERK活化和体内的成骨细胞过度活跃。此外,体内遗传相互作用研究表明,与Lrp5〜(– / –)小鼠杂交可部分拯救Shn3〜(– / –)小鼠的骨硬化表型。从机械上讲,这对应于SHN3抑制ERK介导的GSK3β抑制的能力。成年小鼠中Shn3的诱导型敲低导致高骨质量表型,提供证据表明,成年小鼠中这些途径的短暂阻断有望作为骨质疏松症的治疗方法。

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