Nasykhova Yulia A, Barbitoff Yury A, Serebryakova Elena A, Katserov Dmitry S, Glotov Andrey S
Laboratory of Biobanking and Genomic Medicine of Institute of Translation Biomedicine, St. Petersburg State University, St. Petersburg 199034, Russia.
Department of Genomic Medicine, D.O. Ott Research Institute of Obstetrics, Gynaecology and Reproductology, St. Petersburg 199034, Russia.
World J Diabetes. 2019 Jul 15;10(7):376-395. doi: 10.4239/wjd.v10.i7.376.
Type 2 diabetes (T2D) mellitus is a common complex disease that currently affects more than 400 million people worldwide and has become a global health problem. High-throughput sequencing technologies such as whole-genome and whole-exome sequencing approaches have provided numerous new insights into the molecular bases of T2D. Recent advances in the application of sequencing technologies to T2D research include, but are not limited to: (1) Fine mapping of causal rare and common genetic variants; (2) Identification of confident gene-level associations; (3) Identification of novel candidate genes by specific scoring approaches; (4) Interrogation of disease-relevant genes and pathways by transcriptional profiling and epigenome mapping techniques; and (5) Investigation of microbial community alterations in patients with T2D. In this work we review these advances in application of next-generation sequencing methods for elucidation of T2D pathogenesis, as well as progress and challenges in implementation of this new knowledge about T2D genetics in diagnosis, prevention, and treatment of the disease.
2型糖尿病(T2D)是一种常见的复杂疾病,目前全球有超过4亿人受其影响,已成为一个全球性的健康问题。全基因组和全外显子组测序等高通量测序技术为T2D的分子基础提供了许多新见解。测序技术在T2D研究中的最新进展包括但不限于:(1)对因果罕见和常见遗传变异进行精细定位;(2)确定可靠的基因水平关联;(3)通过特定评分方法鉴定新的候选基因;(4)通过转录谱分析和表观基因组图谱技术探究疾病相关基因和途径;以及(5)调查T2D患者的微生物群落变化。在这项工作中,我们回顾了下一代测序方法在阐明T2D发病机制方面的这些进展,以及在将有关T2D遗传学的新知识应用于该疾病的诊断、预防和治疗方面的进展与挑战。