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首页> 外文期刊>Hormone research >The candidate gene approach to the diagnosis of monogenic disorders.
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The candidate gene approach to the diagnosis of monogenic disorders.

机译:诊断单基因疾病的候选基因方法。

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摘要

The genetic basis of many human diseases has been elucidated by the candidate gene approach. Mouse models of human disease, whether naturally occurring or derived by transgenesis, have enabled a number of disease genes to be identified. Such approaches have formed the basis of the identification of candidate genes implicated in hypothalamo-pituitary development. Nevertheless, significant differences exist between murine and human models of disease. Chromosomal deletions, duplications and translocations that are visible microscopically are also informative and have allowed the discovery of disease genes such as SOX2 and SOX3. In addition, genome-wide mapping techniques using microsatellites have led to the identification of genes such as GPR54, mutations of which are associated with hypogonadotrophic hypogonadism. Newer techniques, such as array comparative genomic hybridization (CGH), have enabled the detection of submicroscopic chromosomal imbalances. These, in turn, can also lead to the identification of disease genes, as has been demonstrated by the discovery of mutations in CHD7 in some patients with the CHARGE syndrome. Most significant, however, is the recent optimization of high-density whole-genome single-nucleotide polymorphism arrays, which provides the potential to identify many disease genes and may revolutionize the field of human genetics.
机译:候选基因方法已经阐明了许多人类疾病的遗传基础。人类疾病的小鼠模型,无论是自然发生的还是通过转基因获得的,都可以鉴定许多疾病基因。这些方法已成为鉴定与下丘脑-垂体发育有关的候选基因的基础。然而,鼠类和人类疾病模型之间存在显着差异。显微镜下可见的染色体缺失,重复和易位也提供了信息,并允许发现疾病基因,例如SOX2和SOX3。另外,使用微卫星的全基因组作图技术已导致鉴定基因,例如GPR54,其突变与性腺功能减退性腺功能减退有关。诸如阵列比较基因组杂交(CGH)之类的较新技术使得能够检测亚显微染色体失衡。这些反过来也可以导致疾病基因的鉴定,正如在一些CHARGE综合征患者中CHD7突变的发现所证明的那样。然而,最重要的是最近对高密度全基因组单核苷酸多态性阵列的优化,这提供了识别许多疾病基因的潜力,并可能会改变人类遗传学领域。

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