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39个人类HOX基因的全突变分析面板

Complete mutation analysis panel of the 39 human HOX genes.

作者信息

Kosaki Kenjiro, Kosaki Rika, Suzuki Taichi, Yoshihashi Hiroshi, Takahashi Takao, Sasaki Katsumi, Tomita Masaru, McGinnis William, Matsuo Nobutake

机构信息

Department of Pediatrics, Keio University School of Medicine, Tokyo, Japan.

出版信息

Teratology. 2002 Feb;65(2):50-62. doi: 10.1002/tera.10009.

Abstract

BACKGROUND

The HOX gene family consists of highly conserved transcription factors that specify the identity of the body segments along the anteroposterior axis of the embryo. Because the phenotypes of mice with targeted disruptions of Hox genes resemble some patterns of human malformations, mutations in HOX genes have been expected to be associated with a significant number of human malformations. Thus far, however, mutations have been documented in only three of the 39 human HOX genes (HOXD13, HOXA13, and HOXA11) partly because current knowledge on the complete coding sequence and genome structure is limited to only 20 of the 39 human HOX genes.

METHODS

Taking advantage of the human and mouse draft genome sequences, we attempted to characterize the remaining 19 human HOX genes by bioinformatic analysis including phylogenetic footprinting, the probabilistic prediction method, and comparison of genomic sequences with the complete set of the human anonymous cDNA sequences.

RESULTS

We were able to determine the full coding sequences of 19 HOX genes and their genome structure and successfully designed a complete set of PCR primers to amplify the entire coding region of each of the 39 HOX genes from genomic DNA.

CONCLUSIONS

Our results indicate the usefulness of bioinformatic analysis of the draft genome sequences for clinically oriented research projects. It is hoped that the mutation panel provided here will serve as a launchpad for a new discourse on the genetic basis of human malformations.

摘要

背景

HOX基因家族由高度保守的转录因子组成,这些转录因子决定了胚胎前后轴上身体节段的特征。由于Hox基因靶向破坏的小鼠表型类似于人类畸形的某些模式,因此预计HOX基因突变与大量人类畸形有关。然而,迄今为止,在39个人类HOX基因中仅有3个基因(HOXD13、HOXA13和HOXA11)被记录有突变,部分原因是目前关于完整编码序列和基因组结构的知识仅局限于39个人类HOX基因中的20个。

方法

利用人类和小鼠基因组草图序列,我们试图通过生物信息学分析来鉴定其余19个人类HOX基因,包括系统发育足迹法、概率预测方法以及将基因组序列与人类匿名cDNA序列全集进行比较。

结果

我们能够确定19个HOX基因的完整编码序列及其基因组结构,并成功设计出一套完整的PCR引物,用于从基因组DNA中扩增39个HOX基因中每个基因的整个编码区。

结论

我们的结果表明基因组草图序列的生物信息学分析对临床导向研究项目有用。希望这里提供的突变组将成为关于人类畸形遗传基础新讨论的起点。

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