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Control of Bone Resorption by Semaphorin 4D Is Dependent on Ovarian Function

机译:Semaphorin 4D对骨吸收的控制取决于卵巢功能

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摘要

Osteoporosis is one of the most common bone pathologies, which are characterized by a decrease in bone mass. It is well established that bone mass, which results from a balanced bone formation and bone resorption, is regulated by many hormonal, environmental and genetic factors. Here we report that the immune semaphorin 4D (Sema4D) is a novel factor controlling bone resorption. Sema4D-deficient primary osteoclasts showed impaired spreading, adhesion, migration and resorption due to altered ß3 integrin sub-unit downstream signaling. In apparent accordance with these in vitro results, Sema4D deletion in sexually mature female mice led to a high bone mass phenotype due to defective bone resorption by osteoclasts. Mutant males, however, displayed normal bone mass and the female osteopetrotic phenotype was only detected at the onset of sexual maturity, indicating that, in vivo, this intrinsic osteoclast defect might be overcome in these mice. Using bone marrow cross transplantation, we confirmed that Sema4D controls bone resorption through an indirect mechanism. In addition, we show that Sema4D −/− mice were less fertile than their WT littermates. A decrease in Gnrh1 hypothalamic expression and a reduced number of ovarian follicles can explain this attenuated fertility. Interestingly, ovariectomy abrogated the bone resorption phenotype in Sema4D −/− mice, providing the evidence that the observed high bone mass phenotype is strictly dependent on ovarian function. Altogether, this study reveals that, in vivo, Sema4D is an indirect regulator of bone resorption, which acts via its effect on reproductive function.
机译:骨质疏松症是最常见的骨病变之一,其特征是骨量减少。公认的是,由平衡的骨形成和骨吸收导致的骨量受许多激素,环境和遗传因素的调节。在这里,我们报告说免疫信号蛋白4D(Sema4D)是控制骨吸收的新因素。缺乏Sema4D的原代破骨细胞由于ß3整联蛋白亚基下游信号传导的改变而导致散布,粘附,迁移和吸收受损。显然,根据这些体外结果,由于破骨细胞的骨吸收不良,性成熟雌性小鼠中的Sema4D缺失导致高骨量表型。然而,突变的雄性显示出正常的骨量,雌性骨质表型仅在性成熟开始时被检测到,表明在体内,这种内在的破骨细胞缺陷可能在这些小鼠中得以克服。使用骨髓交叉移植,我们证实Sema4D通过间接机制控制骨吸收。此外,我们显示Sema4D-/-小鼠的繁殖力低于其WT同窝仔。 Gnrh1下丘脑表达的减少和卵巢卵泡数量的减少可以解释这种生育力降低。有趣的是,卵巢切除术消除了Sema4D-/-小鼠的骨吸收表型,提供了观察到的高骨量表型严格依赖于卵巢功能的证据。总之,这项研究表明,在体内,Sema4D是骨吸收的间接调节剂,它通过其对生殖功能的作用而起作用。

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