三体
生物
转录组
表型
基因
免疫系统
遗传学
染色体
人类遗传学
蛋白质组
微阵列
唐氏综合症
21号染色体
拷贝数变化
计算生物学
基因表达
基因组
作者
Micah G. Donovan,Neetha Paul Eduthan,Keith P. Smith,Eleanor Britton,Hannah R. Lyford,Paula Araya,Ross E. Granrath,Katherine A. Waugh,Belinda Enriquez Estrada,Angela L. Rachubinski,Kelly D. Sullivan,Matthew D. Galbraith,Joaquı́n M. Espinosa
标识
DOI:10.1038/s41467-024-49781-1
摘要
Abstract Individuals with Down syndrome, the genetic condition caused by trisomy 21, exhibit strong inter-individual variability in terms of developmental phenotypes and diagnosis of co-occurring conditions. The mechanisms underlying this variable developmental and clinical presentation await elucidation. We report an investigation of human chromosome 21 gene overexpression in hundreds of research participants with Down syndrome, which led to the identification of two major subsets of co-expressed genes. Using clustering analyses, we identified three main molecular subtypes of trisomy 21, based on differential overexpression patterns of chromosome 21 genes. We subsequently performed multiomics comparative analyses among subtypes using whole blood transcriptomes, plasma proteomes and metabolomes, and immune cell profiles. These efforts revealed strong heterogeneity in dysregulation of key pathophysiological processes across the three subtypes, underscored by differential multiomics signatures related to inflammation, immunity, cell growth and proliferation, and metabolism. We also observed distinct patterns of immune cell changes across subtypes. These findings provide insights into the molecular heterogeneity of trisomy 21 and lay the foundation for the development of personalized medicine approaches for the clinical management of Down syndrome.
科研通智能强力驱动
Strongly Powered by AbleSci AI