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Gene network and familial analyses uncover a gene network involving Tbx5/Osr1/Pcsk6 interaction in the second heart field for atrial septation

机译:基因网络和家族分析揭示了第二个心脏区域中涉及Tbx5 / Osr1 / Pcsk6相互作用的基因网络以进行心房分隔

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摘要

Atrial septal defects (ASDs) are a common human congenital heart disease (CHD) that can be induced by genetic abnormalities. Our previous studies have demonstrated a genetic interaction between Tbx5 and Osr1 in the second heart field (SHF) for atrial septation. We hypothesized that Osr1 and Tbx5 share a common signaling networking and downstream targets for atrial septation. To identify this molecular networks, we acquired the RNA-Seq transcriptome data from the posterior SHF of wild-type, Tbx5+/, Osr1+/−, Osr1−/− and Tbx5+/−/Osr1+/− mutant embryos. Gene set analysis was used to identify the Kyoto Encyclopedia of Genes and Genomes pathways that were affected by the doses of Tbx5 and Osr1. A gene network module involving Tbx5 and Osr1 was identified using a non-parametric distance metric, distance correlation. A subset of 10 core genes and gene–gene interactions in the network module were validated by gene expression alterations in posterior second heart field (pSHF) of Tbx5 and Osr1 transgenic mouse embryos, a time-course gene expression change during P19CL6 cell differentiation. Pcsk6 was one of the network module genes that were linked to Tbx5. We validated the direct regulation of Tbx5 on Pcsk6 using immunohistochemical staining of pSHF, ChIP-quantitative polymerase chain reaction and luciferase reporter assay. Importantly, we identified Pcsk6 as a novel gene associated with ASD via a human genotyping study of an ASD family. In summary, our study implicated a gene network involving Tbx5, Osr1 and Pcsk6 interaction in SHF for atrial septation, providing a molecular framework for understanding the role of Tbx5 in CHD ontogeny.
机译:房间隔缺损(ASD)是一种常见的人类先天性心脏病(CHD),可由遗传异常引起。我们以前的研究表明房间隔分隔中第二心脏区域(SHF)中Tbx5和Osr1之间的遗传相互作用。我们假设Osr1和Tbx5共享一个共同的信号网络和心房分离的下游目标。为了鉴定该分子网络,我们从野生型Tbx5 + / -,Osr1 +/- <后SHF中获得了RNA-Seq转录组数据/ sup>,Osr1 -/-和Tbx5 +/- / Osr1 +/- 突变体胚胎。基因组分析用于鉴定受Tbx5和Osr1剂量影响的《京都议定书》的基因和基因组途径。使用非参数距离度量距离相关性鉴定了涉及Tbx5和Osr1的基因网络模块。 Tbx5和Osr1转基因小鼠胚胎的后第二心脏区域(pSHF)中的基因表达变化,即P19CL6细胞分化过程中随时间变化的基因表达,验证了网络模块中10个核心基因和基因-基因相互作用的子集。 Pcsk6是与Tbx5连锁的网络模块基因之一。我们使用pSHF的免疫组织化学染色,ChIP定量聚合酶链反应和荧光素酶报告基因分析验证了 Tbx5 Pcsk6 的直接调控。重要的是,通过对ASD家族的人类基因分型研究,我们确定了 Pcsk6 是与ASD相关的新基因。总而言之,我们的研究牵涉到涉及Sem的SHF中涉及 Tbx5 Osr1 Pcsk6 相互作用的基因网络,为理解该基因提供了分子框架。 Tbx5在冠心病个体发育中的作用

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