Department of Internal Medicine/ Nephrology, Yale University School of Medicine, New Haven, CT, USA.
Department of Pediatrics/ Nephrology, Yale University School of Medicine, New Haven, CT, USA.
Pediatr Nephrol. 2020 Jun;35(6):959-968. doi: 10.1007/s00467-019-04266-y. Epub 2019 May 3.
The synchronized advent of high-throughput next-generation sequencing technology and knowledge of the human genome has rendered exponential contributions to our understanding of the pathophysiology of glomerular kidney diseases. A genetic diagnosis can now be made or confirmed in about two-thirds of the suspected inherited glomerular diseases. Next-generation sequencing is adept at identifying single nucleotide variations and small insertions or deletions that constitute majority of the disease-causing mutations. Description of the complete mutation spectrum in syndromic glomerulopathies may require the use of both sequencing and cytogenetic methods to detect large structural DNA variation in addition to single nucleotide changes. The enthusiastic application of genetic and genomic knowledge to inherited glomerular diseases has uncovered anticipated and unforeseen challenges mainly related to the biological interpretation of variants of uncertain significance and the limited benefit on clinical management for the individual patient when a diagnosis is obtained. To attain the ultimate goal of transforming clinical decision-making based on accurate genetic diagnosis using genomic information, these challenges need to be addressed. Till then, the glory of genomic medicine stands the test of time in this gilded age of genomic advancements.
高通量下一代测序技术和人类基因组知识的同步出现,极大地促进了我们对肾小球肾脏疾病病理生理学的理解。现在,大约三分之二的疑似遗传性肾小球疾病可以进行或确认遗传诊断。下一代测序非常擅长识别构成大多数致病突变的单核苷酸变异和小的插入或缺失。综合征性肾小球病的完整突变谱的描述可能需要测序和细胞遗传学方法的结合使用,除了单核苷酸变化外,还可以检测到大的结构 DNA 变异。将遗传和基因组知识热情地应用于遗传性肾小球疾病,揭示了预期和意料之外的挑战,主要与不确定意义的变异的生物学解释以及获得诊断时对个体患者的临床管理的有限益处有关。为了实现基于基因组信息的准确遗传诊断来改变临床决策的最终目标,这些挑战需要得到解决。在那之前,基因组医学的辉煌在基因组进步的这个镀金时代经受住了时间的考验。