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从老鼠到人:CACNG2 疼痛易感性基因的发现。

From mouse to humans: discovery of the CACNG2 pain susceptibility gene.

机构信息

Department of Genetics, The Hebrew University of Jerusalem, Jerusalem, Israel.

出版信息

Clin Genet. 2012 Oct;82(4):311-20. doi: 10.1111/j.1399-0004.2012.01924.x. Epub 2012 Jul 27.

Abstract

Chronic pain is a major healthcare problem affecting the daily lives of millions with enormous financial costs. The notorious variability and lack of efficient pain relief pharmaceuticals provide both genetic and therapeutic challenge. There are several genetic approaches that aim to uncover the molecular nature of pain phenotypes into their genetic components. Gene mapping using model organisms for various pain phenotypes has led to the identification of novel genes affecting susceptibility and response to pain stimuli. Translational studies have succeeded to tie those genes to human pain syndromes, thus suggesting new targets for drug discovery. In this short review, a perspective on pain genetics and the trajectory from pain phenotype to pain gene involving fine-mapping strategies, bioinformatic analysis and microarray profiling alongside human association analysis will be introduced. This integrated approach has led to identification of CACNG2 as a novel neuropathic pain gene affecting pain susceptibility both in mice and humans. It also serves as a prototype for efficient and economic discovery of pain genes. Comparisons to other methods as well as future directions of pain genetics will be discussed as well.

摘要

慢性疼痛是一个主要的医疗保健问题,影响着数以百万计的人的日常生活,并带来了巨大的经济成本。疼痛缓解药物的显著变异性和缺乏效率,既带来了遗传方面的挑战,也带来了治疗方面的挑战。有几种遗传方法旨在揭示疼痛表型的分子性质及其遗传成分。使用各种疼痛表型的模式生物进行基因映射,已经确定了影响对疼痛刺激的易感性和反应的新基因。转化研究已经成功地将这些基因与人类疼痛综合征联系起来,从而为药物发现提供了新的靶点。在这篇简短的综述中,我们将介绍疼痛遗传学的观点,以及从疼痛表型到涉及精细映射策略、生物信息学分析和微阵列分析以及人类关联分析的疼痛基因的轨迹。这种综合方法已经确定 CACNG2 是一种影响小鼠和人类疼痛易感性的新型神经性疼痛基因。它也为疼痛基因的高效和经济发现提供了一个范例。我们还将对其他方法进行比较,并讨论疼痛遗传学的未来方向。

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