Molecular analysis of genetic diseases: an overview for clinicians.

A A Javed, Y Huang, A T Bombard
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Abstract

The identification of fetal genetic disease has, for the most part, relied on examination of an end product, such as analysis of factor VIII levels obtained from cord blood in fetuses at risk for hemophilia. Advances in molecular genetics have shifted our focus in prenatal diagnosis away from protein product analysis toward etiology, making new discoveries gleaned from the Human Genome Project relevant to clinicians. This review discusses the basic principles involved in gene-based diagnosis, highlighting the complexities of current approaches to molecular diagnosis of fetal genetic disease. Given an understanding of both the theory and practice of genetic analysis, the review covers the fundamental principles of molecular biology (structure, function, packaging, and regulation) and discusses recombinant DNA techniques presently used for the analysis of mutations. Clinical examples are presented to introduce the techniques most commonly employed in service laboratories: direct detection assays, where the specific mutation is recognized, and indirect detection assays, useful for the deduction of an inheritance pattern where the actual mutation or its gene is not known but may be closely linked to known DNA polymorphisms.

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遗传疾病的分子分析:临床医生综述。
胎儿遗传疾病的鉴定在很大程度上依赖于对最终产物的检查,例如分析血友病风险胎儿的脐带血中获得的因子VIII水平。分子遗传学的进步使我们产前诊断的重点从蛋白质产物分析转向病因学,从人类基因组计划中收集的新发现与临床医生相关。这篇综述讨论了基于基因的诊断的基本原则,强调了目前胎儿遗传疾病分子诊断方法的复杂性。鉴于遗传分析的理论和实践的理解,综述涵盖了分子生物学的基本原理(结构,功能,包装和调控),并讨论了目前用于突变分析的重组DNA技术。临床实例介绍了服务实验室中最常用的技术:直接检测分析,其中特定突变被识别;间接检测分析,用于推断遗传模式,其中实际突变或其基因未知,但可能与已知的DNA多态性密切相关。
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