...
首页> 外文期刊>Molecular genetics and metabolism >Complex patterns of inheritance, including synergistic heterozygosity, in inborn errors of metabolism: Implications for precision medicine driven diagnosis and treatment
【24h】

Complex patterns of inheritance, including synergistic heterozygosity, in inborn errors of metabolism: Implications for precision medicine driven diagnosis and treatment

机译:复杂的遗传模式,包括协同杂合性,在原始的新陈代谢误差中:对精确药物驱动诊断和治疗的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Inborn errors of metabolism have traditionally been viewed as the quintessential single gene disorders; defects in one gene leads to loss of activity of one enzyme causing a metabolic imbalance and clinical disease. However, reality has never been quite that simple, and the classic "one gene-one enzyme" paradigm has been upended in many ways. Multiple gene defects can lead to the same biochemical phenotype, often with different clinical symptoms. Additionally, different mutations in the same gene can cause variable phenotypes, often most dramatic when a disease can be identified by pre-symptomatic screening. Moreover, response to therapy is not homogeneous across diseases and specific mutations. Perhaps the biggest deviation from traditional monogenic inheritance is in the setting of synergistic heterozygosity, a multigenic inheritance pattern in which mutations in multiple genes in a metabolic pathway lead to sufficient disruption of flux through the pathway, mimicking a monogenic disorder caused by homozygous defects in one gene in that pathway. In addition, widespread adoption of whole exome and whole genome sequencing in medical genetics has led to the realization that individual patients with apparently hybrid phenotypes can have mutations in more than one gene, leading to a mixed genetic disorder. Each of these situations point to a need for as much precision as possible in diagnosing metabolic disease, and it is likely to become increasingly critical to drive therapy. This article examines examples in traditional monogenic disorders that illustrates these points and define inborn errors of metabolism as complex genetic traits on the leading edge of precision medicine.
机译:传统上,新陈代谢的原始误差被视为典型的单一基因障碍;一种基因的缺陷导致一种酶的活性丧失,导致代谢不平衡和临床疾病。然而,现实从未如此简单,并且经典的“一种基因 - 一种酶”范式已经在许多方面上升了。多种基因缺陷可导致相同的生化表型,通常具有不同的临床症状。另外,同一基因中的不同突变可导致可变表型,当疾病可以通过前症状筛查鉴定时通常是最戏剧性的。此外,对治疗的反应在疾病和特异性突变中并不均匀。也许来自传统的单一遗传的最大偏差是在协同杂合子的设置中,一种多键遗传模式,其中代谢途径中的多种基因中的突变导致通过途径充分破坏通量,模仿由一个纯合缺陷引起的单一组成疾病该途径中的基因。此外,在医学遗传学中广泛采用全脂群和全基因组测序导致了实现明显杂交表型的个体患者可以具有多种基因的突变,导致混合遗传障碍。这些情况中的每一个都可以在诊断代谢疾病时尽可能多地进行精确度,并且可能对驱动治疗越来越重要。本文研究了传统的单一形学疾病中的实例,说明了这些要点,并将原始误差定义为精密药物前缘的复杂遗传性状。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号