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Inhibition of sclerostin and Wnt signaling and inhibition of bone formation

机译:抑制硬化素和Wnt信号并抑制骨形成

摘要

The loss of the SOST gene product sclerostin leads to sclerosteosis characterized by high bone mass (HBM). In this report, we found that sclerostin could antagonize canonical Wnt signaling in human embryonic kidney A293 cells and mouse osteoblastic MC3T3 cells. This sclerostin-mediated antagonism could be reversed by over-expression of Wnt coreceptor LRP5. In addition, we found that sclerostin bound to LRP5 as well as LRP6 and identified the first two YWTD-EGF repeat domains of LRP5 as being responsible for the binding. Although these two repeat domains are required for transducing canonical Wnt signals, canonical Wnt did not appear to compete with sclerostin for binding to LRP5. Examination of the expression of sclerostin and Wnt7b, an autocrine canonical Wnt, during primary calvarial osteoblast differentiation revealed that sclerostin is expressed at the late stages of osteoblast differentiation coinciding with the expression of osteogenic marker osteocalcin and trailing after the expression of Wnt7b. Given the plethora of evidence indicating that canonical Wnt signaling stimulates osteogenesis, we believe that the HBM phenotype associated with the loss of sclerostin may at least in part be attributed to an increase in canonical Wnt signaling resulting from the reduction in sclerostin-mediated Wnt antagonism.
机译:SOST基因产物硬化素的丢失导致以高骨量(HBM)为特征的硬化症。在此报告中,我们发现硬化素可以拮抗人类胚胎肾脏A293细胞和小鼠成骨细胞MC3T3细胞中的经典Wnt信号传导。 Wnt核心受体LRP5的过度表达可以逆转这种硬化素介导的拮抗作用。此外,我们发现硬化素与LRP5以及LRP6结合,并确定了LRP5的前两个YWTD-EGF重复结构域是造成结合的原因。尽管这两个重复域是转导经典Wnt信号所必需的,但经典Wnt似乎并未与硬化素竞争与LRP5的结合。在初次颅盖骨成骨细胞分化过程中检查硬化蛋白和Wnt7b(一种自分泌的经典Wnt)的表达表明,硬化蛋白在成骨细胞分化的晚期表达,与成骨标记骨钙素的表达相吻合,而在Wnt7b的表达后则落后。鉴于有大量证据表明经典Wnt信号刺激了成骨作用,因此我们认为与硬化素丢失相关的HBM表型至少部分归因于由于硬化素介导的Wnt拮抗作用减少而导致的经典Wnt信号增加。

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