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首页> 外文期刊>Molecular and Cellular Biology >Reduced Affinity to and Inhibition by DKK1 Form a Common Mechanism by Which High Bone Mass-Associated Missense Mutations in LRP5 Affect Canonical Wnt Signaling
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Reduced Affinity to and Inhibition by DKK1 Form a Common Mechanism by Which High Bone Mass-Associated Missense Mutations in LRP5 Affect Canonical Wnt Signaling

机译:对DKK1的亲和力降低和抑制作用形成了一个共同的机制,该机制通过LRP5中的高骨质量相关的错义突变影响规范Wnt信号传导。

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摘要

The low-density-lipoprotein receptor-related protein 5 (LRP5), a coreceptor in the canonical Wnt signaling pathway, has been implicated in human disorders of low and high bone mass. Loss-of-function mutations cause the autosomal recessive osteoporosis-pseudoglioma syndrome, and heterozygous missense mutations in families segregating autosomal dominant high bone mass (HBM) phenotypes have been identified. We expressed seven different HBM-LRP5 missense mutations to delineate the mechanism by which they alter Wnt signaling. None of the mutations caused activation of the receptor in the absence of ligand. Each mutant receptor was able to reach the cell surface, albeit at differing amounts, and transduce exogenously supplied Wnt1 and Wnt3a signal. All HBM mutant proteins had reduced physical interaction with and reduced inhibition by DKK1. These data suggest that HBM mutant proteins can transit to the cell surface in sufficient quantity to transduce Wnt signal and that the likely mechanism for the HBM mutations' physiologic effects is via reduced affinity to and inhibition by DKK1.
机译:低密度脂蛋白受体相关蛋白5(LRP5),在规范的Wnt信号通路中的一个共受体,已经被认为与人类低和高骨量疾病有关。功能丧失突变引起常染色体隐性遗传性骨质疏松-假性神经胶质瘤综合征,并且已经鉴定了分离常染色体显性高骨量(HBM)表型的家庭中的杂合错义突变。我们表达了七个不同的HBM-LRP5错义突变,以描述它们改变Wnt信号转导的机制。在没有配体的情况下,没有一个突变引起受体的激活。每个突变受体能够到达细胞表面,尽管数量不同,并且能够转导外源提供的Wnt1和Wnt3a信号。所有的HBM突变蛋白都减少了与DKK1的物理相互作用,并减少了其抑制作用。这些数据表明,HBM突变蛋白可以以足够的量传递到细胞表面以转导Wnt信号,并且HBM突变的生理效应的可能机制是通过降低DKK1的亲和力和抑制。

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