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网络分析表明α-突触核蛋白(Snca)参与调节卵巢切除诱导的骨丢失。

Network Analysis Implicates Alpha-Synuclein (Snca) in the Regulation of Ovariectomy-Induced Bone Loss.

机构信息

Center for Public Health Genomics, University of Virginia, Charlottesville, Virginia 22908, USA.

Department of Microbiology and Immunology, Georgetown University, Washington, DC 20007, USA.

出版信息

Sci Rep. 2016 Jul 5;6:29475. doi: 10.1038/srep29475.

Abstract

The postmenopausal period in women is associated with decreased circulating estrogen levels, which accelerate bone loss and increase the risk of fracture. Here, we gained novel insight into the molecular mechanisms mediating bone loss in ovariectomized (OVX) mice, a model of human menopause, using co-expression network analysis. Specifically, we generated a co-expression network consisting of 53 gene modules using expression profiles from intact and OVX mice from a panel of inbred strains. The expression of four modules was altered by OVX, including module 23 whose expression was decreased by OVX across all strains. Module 23 was enriched for genes involved in the response to oxidative stress, a process known to be involved in OVX-induced bone loss. Additionally, module 23 homologs were co-expressed in human bone marrow. Alpha synuclein (Snca) was one of the most highly connected "hub" genes in module 23. We characterized mice deficient in Snca and observed a 40% reduction in OVX-induced bone loss. Furthermore, protection was associated with the altered expression of specific network modules, including module 23. In summary, the results of this study suggest that Snca regulates bone network homeostasis and ovariectomy-induced bone loss.

摘要

女性绝经后,循环雌激素水平下降,加速骨质流失,增加骨折风险。在这里,我们使用共表达网络分析,深入了解了去卵巢(OVX)小鼠模型中介导骨丢失的分子机制,该模型模拟了人类绝经期。具体来说,我们使用一组近交系小鼠的完整和 OVX 小鼠的表达谱,生成了一个由 53 个基因模块组成的共表达网络。OVX 改变了四个模块的表达,包括在所有品系中均被 OVX 下调的模块 23。模块 23 富集了与氧化应激反应相关的基因,这一过程已知与 OVX 诱导的骨丢失有关。此外,模块 23 的同源物在人类骨髓中也有共表达。α-突触核蛋白(Snca)是模块 23 中连接度最高的“枢纽”基因之一。我们对 Snca 缺失的小鼠进行了特征描述,观察到 OVX 诱导的骨丢失减少了 40%。此外,保护作用与特定网络模块的改变表达有关,包括模块 23。总之,这项研究的结果表明,Snca 调节骨骼网络的动态平衡和卵巢切除引起的骨丢失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d11/4932518/ee335cc4bf16/srep29475-f1.jpg

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