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瘦素受体 (Lepr) 是骨机械敏感性的负调节剂,Lepr 中的遗传变异可能导致 C57BL/6J 和 C3H/HeJ 两种小鼠品系对机械刺激的成骨反应存在差异。

Leptin receptor (Lepr) is a negative modulator of bone mechanosensitivity and genetic variations in Lepr may contribute to the differential osteogenic response to mechanical stimulation in the C57BL/6J and C3H/HeJ pair of mouse strains.

机构信息

Musculoskeletal Disease Center, Jerry L Pettis Memorial Veterans Affairs Medical Center, Loma Linda, California 92357, USA.

出版信息

J Biol Chem. 2010 Nov 26;285(48):37607-18. doi: 10.1074/jbc.M110.169714. Epub 2010 Sep 17.

Abstract

This study investigated the role of leptin receptor (Lepr) signaling in determining the bone mechanosensitivity and also evaluated whether differences in the Lepr signaling may contribute to the differential osteogenic response of the C57BL/6J (B6) and C3H/HeJ (C3H) pair of mouse strains to mechanical stimuli. This study shows that a loading strain of ∼2,500 με, which was insufficient to produce a bone formation response in B6 mice, significantly increased bone formation parameters in leptin-deficient ob(-)/ob(-) mice and that a loading strain of ∼3,000 με also yielded greater osteogenic responses in Lepr-deficient db(-)/db(-) mice than in wild-type littermates. In vitro, a 30-min steady shear stress increased [(3)H]thymidine incorporation and Erk1/2 phosphorylation in ob(-)/ob(-) osteoblasts and db(-)/db(-) osteoblasts much greater than those in corresponding wild-type osteoblasts. The siRNA-mediated suppression of Lepr expression in B6 osteoblasts enhanced (but in osteoblasts of C3H (the mouse strain with poor bone mechanosensitivity) restored) their anabolic responses to shear stress. The Lepr signaling (leptin-induced Jak2/Stat3 phosphorylation) in C3H osteoblasts was higher than that in B6 osteoblasts. One of the three single nucleotide polymorphisms in the C3H Lepr coding region yielded an I359V substitution near the leptin binding region, suggesting that genetic variation of Lepr may contribute to a dysfunctional Lepr signaling in C3H osteoblasts. In conclusion, Lepr signaling is a negative modulator of bone mechanosensitivity. Genetic variations in Lepr, which result in a dysfunctional Lepr signaling in C3H mice, may contribute to the poor osteogenic response to loading in C3H mice.

摘要

本研究探讨了瘦素受体(Lepr)信号在决定骨机械敏感性中的作用,并评估了 Lepr 信号的差异是否可能导致 C57BL/6J(B6)和 C3H/HeJ(C3H)两种小鼠对机械刺激的成骨反应存在差异。本研究表明,一种加载应变约为 2500 με,不足以引起 B6 小鼠的骨形成反应,但在瘦素缺乏型 ob(-)/ob(-)小鼠中,显著增加了骨形成参数,而加载应变约为 3000 με 也使 Lepr 缺陷型 db(-)/db(-)小鼠的成骨反应大于其野生型同窝仔鼠。体外,30 分钟的稳定剪应力增加了 ob(-)/ob(-)成骨细胞和 db(-)/db(-)成骨细胞中 [(3)H]胸苷掺入和 Erk1/2 磷酸化,其程度远大于相应的野生型成骨细胞。B6 成骨细胞中 Lepr 表达的 siRNA 抑制增强了(但在 C3H 成骨细胞中恢复了)它们对剪应力的合成反应。C3H 成骨细胞中的 Lepr 信号(瘦素诱导的 Jak2/Stat3 磷酸化)高于 B6 成骨细胞。C3H Lepr 编码区的三个单核苷酸多态性之一在瘦素结合区附近产生了 I359V 取代,表明 Lepr 的遗传变异可能导致 C3H 成骨细胞中 Lepr 信号功能障碍。总之,Lepr 信号是骨机械敏感性的负调节剂。C3H 小鼠中 Lepr 的遗传变异导致 Lepr 信号功能障碍,可能导致 C3H 小鼠对加载的成骨反应不良。

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