Sutanu Nandi, Yuehua Zhu, Lucas A Gillenwater, Marc Subirana-Granés, Haoyu Zhang, Negar Janani, Casey Greene, Milton Pividori, Maria Chikina, James C Costello
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引用次数: 0
摘要
唐氏综合症(DS)是由21号染色体三倍(T21)引起的,是一种普遍存在的遗传性疾病,肥胖发病率较高。传统方法很难区分t21特异性分子失调与一般肥胖相关过程。本研究引入omni-PLIER框架,结合通路水平信息提取器(pathway level Information ExtractoR, PLIER)和omnigenic模型,揭示DS肥胖的分子机制。PLIER框架将基因表达数据与生物学途径相结合,促进了相关分子模式的识别。利用人类三体计划的RNA测序数据,omni-PLIER鉴定出与T21和体重指数(BMI)显著相关的潜在变量(lv)。弹性网回归和因果中介分析表明LVs介导核型对BMI的影响。值得注意的是,涉及谷胱甘肽过氧化物酶-1 (GPX1)和MCL1细胞凋亡调节因子、BCL2家族成员的lv成为关键的介质。这些发现为DS和肥胖之间的分子相互作用提供了见解。omni-PLIER模型为解剖复杂的遗传疾病提供了强有力的方法进步,对理解退行性痴呆和普通人群中肥胖相关过程具有重要意义。
A Pathway-Level Information ExtractoR (PLIER) framework to gain mechanistic insights into obesity in Down syndrome.
Down syndrome (DS), caused by the triplication of chromosome 21 (T21), is a prevalent genetic disorder with a higher incidence of obesity. Traditional approaches have struggled to differentiate T21-specific molecular dysregulation from general obesity-related processes. This study introduces the omni-PLIER framework, combining the Pathway-Level Information ExtractoR (PLIER) with the omnigenic model, to uncover molecular mechanisms underlying obesity in DS. The PLIER framework aligns gene expression data with biological pathways, facilitating the identification of relevant molecular patterns. Using RNA sequencing data from the Human Trisome Project, omni-PLIER identified latent variables (LVs) significantly associated with both T21 and body mass index (BMI). Elastic net regression and causal mediation analysis revealed LVs mediating the effect of karyotype on BMI. Notably, LVs involving glutathione peroxidase-1 (GPX1) and MCL1 apoptosis regulator, BCL2 family members emerged as crucial mediators. These findings provide insights into the molecular interplay between DS and obesity. The omni-PLIER model offers a robust methodological advancement for dissecting complex genetic disorders, with implications for understanding obesity-related processes in both DS and the general population.