对脑组织和骨组织转录本的网络分析揭示了阿尔茨海默病及相关痴呆症(ADRD)和骨质疏松症的共同分子机制。

Archana Nagarajan, Jason Laird, Obiadada Ugochukwu, Sjur Reppe, Kaare Gautvik, Ryan D Ross, David A Bennett, Clifford Rosen, Douglas P Kiel, Lenora A Higginbotham, Nicholas T Seyfried, Christine W Lary
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引用次数: 0

摘要

阿尔茨海默病及相关痴呆症(ADRD)和骨质疏松症(OP)是两种常见的老龄化疾病,两者之间存在明显的流行病学关联,但导致这种关联的潜在分子机制尚不清楚。我们利用骨骼和大脑转录组的网络分析发现了这两种疾病的共同分子机制。我们的研究包括来自 ROSMAP(宗教教派研究和拉什记忆与衰老项目)629 名参与者尸检大脑背外侧前额叶皮层组织的 RNA 序列数据,其中 298 人的亚组符合纳入五种 ADRD 类别的标准;以及来自奥斯陆绝经后妇女研究 84 名参与者经髂骨活检的 RNA 阵列数据。在每个组织中建立每个网络后,我们分析了模块(共表达基因组)与多种骨骼和神经特征之间的关联,检查了网络间模块的重叠,并进行了通路富集分析以发现保守机制。我们在 ROSMAP 中发现了与 ADRD 和骨骼相关特征有显著关联的三个模块,在 Oslo 中发现了与多种骨骼结果有显著关联的四个模块。我们发现这两个网络中与信号传导、组织稳态和发育相关的模块有明显的模块重叠,并且在 OP 和 ADRD 感兴趣的模块中发现了高度富集的无翼鸟相关整合位点(Wnt)信号传导。这些结果为开发 ADRD 和 OP 的治疗方法和生物标记物提供了转化机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Network analysis of brain and bone tissue transcripts reveals shared molecular mechanisms underlying Alzheimer's Disease and related dementias (ADRD) and Osteoporosis.

Alzheimer's disease and related dementias (ADRD) and osteoporosis (OP) are two prevalent diseases of aging with demonstrated epidemiological association, but the underlying molecular mechanisms contributing to this association are unknown. We used network analysis of bone and brain transcriptomes to discover common molecular mechanisms underlying these two diseases. Our study included RNA-sequencing data from the dorsolateral prefrontal cortex tissue of autopsied brains in 629 participants from ROSMAP (Religious Orders Study and the Rush Memory and Aging Project), with a subgroup of 298 meeting criteria for inclusion in five ADRD categories, and RNA array data from transiliac bone biopsies in 84 participants from the Oslo study of postmenopausal women. After developing each network within each tissue, we analyzed associations between modules (groups of co-expressed genes) with multiple bone and neurological traits, examined overlap in modules between networks, and performed pathway enrichment analysis to discover conserved mechanisms. We discovered three modules in ROSMAP that showed significant associations with ADRD and bone related traits and four modules in Oslo that showed significant associations with multiple bone outcomes. We found significant module overlap between the two networks in modules linked to signaling, tissue homeostasis, and development, and Wingless-related integration site (Wnt) signaling was found to be highly enriched in OP and ADRD modules of interest. These results provide translational opportunities in the development of treatments and biomarkers for ADRD and OP.

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