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Prdm6 通过促进动脉导管平滑肌细胞的身份和收缩性来驱动动脉导管关闭。

Prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility.

机构信息

Department of Pathology and McAllister Heart Institute, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA.

Department of Pediatrics, Vanderbilt University Medical Center, Nashville, Tennessee, USA.

出版信息

JCI Insight. 2023 Mar 8;8(5):e163454. doi: 10.1172/jci.insight.163454.

Abstract

Based upon our demonstration that the smooth muscle cell-selective (SMC-selective) putative methyltransferase, Prdm6, interacts with myocardin-related transcription factor-A, we examined Prdm6's role in SMCs in vivo using cell type-specific knockout mouse models. Although SMC-specific depletion of Prdm6 in adult mice was well tolerated, Prdm6 depletion in Wnt1-expressing cells during development resulted in perinatal lethality and a completely penetrant patent ductus arteriosus (DA) phenotype. Lineage tracing experiments in Wnt1Cre2 Prdm6fl/fl ROSA26LacZ mice revealed normal neural crest-derived SMC investment of the outflow tract. In contrast, myography measurements on DA segments isolated from E18.5 embryos indicated that Prdm6 depletion significantly reduced DA tone and contractility. RNA-Seq analyses on DA and ascending aorta samples at E18.5 identified a DA-enriched gene program that included many SMC-selective contractile associated proteins that was downregulated by Prdm6 depletion. Chromatin immunoprecipitation-sequencing experiments in outflow tract SMCs demonstrated that 50% of the genes Prdm6 depletion altered contained Prdm6 binding sites. Finally, using several genome-wide data sets, we identified an SMC-selective enhancer within the Prdm6 third intron that exhibited allele-specific activity, providing evidence that rs17149944 may be the causal SNP for a cardiovascular disease GWAS locus identified within the human PRDM6 gene.

摘要

基于我们的研究表明,平滑肌细胞选择性(SMC 选择性)假定的甲基转移酶 Prdm6 与肌球蛋白相关转录因子 A 相互作用,我们使用细胞类型特异性敲除小鼠模型研究了 Prdm6 在体内的 SMC 中的作用。虽然成年小鼠中 Prdm6 的 SMC 特异性缺失能够很好地耐受,但在发育过程中 Wnt1 表达细胞中 Prdm6 的缺失导致围产期致死和完全穿透性动脉导管未闭(DA)表型。在 Wnt1Cre2 Prdm6fl/fl ROSA26LacZ 小鼠中的谱系追踪实验表明,神经嵴衍生的 SMC 正常投资流出道。相比之下,对从 E18.5 胚胎分离的 DA 段进行的肌描记术测量表明,Prdm6 缺失显著降低了 DA 的张力和收缩性。在 E18.5 时对 DA 和升主动脉样本进行的 RNA-Seq 分析确定了一个 DA 丰富的基因程序,其中包括许多 SMC 选择性收缩相关蛋白,这些蛋白的表达被 Prdm6 缺失下调。在流出道 SMC 中的染色质免疫沉淀测序实验表明,Prdm6 缺失改变的 50%的基因包含 Prdm6 结合位点。最后,使用几个全基因组数据集,我们在 Prdm6 第三个内含子中鉴定了一个 SMC 选择性增强子,该增强子表现出等位基因特异性活性,为 rs17149944 可能是人类 PRDM6 基因中鉴定出的心血管疾病 GWAS 基因座的因果 SNP 提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4603/10077476/b3d69e4693fb/jciinsight-8-163454-g058.jpg

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