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非综合征性听力损失基因鉴定:简史与未来展望

Non-syndromic hearing loss gene identification: A brief history and glimpse into the future.

作者信息

Vona Barbara, Nanda Indrajit, Hofrichter Michaela A H, Shehata-Dieler Wafaa, Haaf Thomas

机构信息

Institute of Human Genetics, Julius Maximilians University, Würzburg, Germany.

Institute of Human Genetics, Julius Maximilians University, Würzburg, Germany.

出版信息

Mol Cell Probes. 2015 Oct;29(5):260-70. doi: 10.1016/j.mcp.2015.03.008. Epub 2015 Apr 3.

Abstract

From the first identified non-syndromic hearing loss gene in 1995, to those discovered in present day, the field of human genetics has witnessed an unparalleled revolution that includes the completion of the Human Genome Project in 2003 to the $1000 genome in 2014. This review highlights the classical and cutting-edge strategies for non-syndromic hearing loss gene identification that have been used throughout the twenty year history with a special emphasis on how the innovative breakthroughs in next generation sequencing technology have forever changed candidate gene approaches. The simplified approach afforded by next generation sequencing technology provides a second chance for the many linked loci in large and well characterized families that have been identified by linkage analysis but have presently failed to identify a causative gene. It also discusses some complexities that may restrict eventual candidate gene discovery and calls for novel approaches to answer some of the questions that make this simple Mendelian disorder so intriguing.

摘要

从1995年发现首个非综合征性听力损失基因,到如今发现的众多基因,人类遗传学领域经历了一场无与伦比的革命,其中包括2003年人类基因组计划的完成以及2014年的千美元基因组计划。这篇综述重点介绍了在这二十年历史中用于非综合征性听力损失基因鉴定的经典和前沿策略,特别强调了下一代测序技术的创新突破如何永远改变了候选基因方法。下一代测序技术提供的简化方法为通过连锁分析确定的、目前未能鉴定出致病基因的大型且特征明确的家系中的许多连锁位点提供了新的机会。它还讨论了一些可能限制最终候选基因发现的复杂性,并呼吁采用新方法来回答一些使这种简单的孟德尔疾病如此引人入胜的问题。

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