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The long noncoding RNA Wisper controls cardiac fibrosis and remodeling

机译:较长的非编码RNA Wisper可控制心脏纤维化和重塑

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摘要

Long noncoding RNAs (lncRNAs) are emerging as powerful regulators of cardiac development and disease. However, our understanding of the importance of these molecules in cardiac fibrosis is limited. Using an integrated genomic screen, we identified Wisper (Wisp2 super-enhancer–associated RNA) as a cardiac fibroblast–enriched lncRNA that regulates cardiac fibrosis after injury. Wisper expression was correlated with cardiac fibrosis both in a murine model of myocardial infarction (MI) and in heart tissue from human patients suffering from aortic stenosis. Loss-of-function approaches in vitro using modified antisense oligonucleotides (ASOs) demonstrated that Wisper is a specific regulator of cardiac fibroblast proliferation, migration, and survival. Accordingly, ASO-mediated silencing of Wisper in vivo attenuated MI-induced fibrosis and cardiac dysfunction. Functionally, Wisper regulates cardiac fibroblast gene expression programs critical for cell identity, extracellular matrix deposition, proliferation, and survival. In addition, its association with TIA1-related protein allows it to control the expression of a profibrotic form of lysyl hydroxylase 2, implicated in collagen cross-linking and stabilization of the matrix. Together, our findings identify Wisper as a cardiac fibroblast–enriched super-enhancer–associated lncRNA that represents an attractive therapeutic target to reduce the pathological development of cardiac fibrosis in response to MI and prevent adverse remodeling in the damaged heart.
机译:长的非编码RNA(lncRNA)逐渐成为心脏发育和疾病的强有力的调节者。但是,我们对这些分子在心脏纤维化中的重要性的理解是有限的。使用整合的基因组筛选,我们将Wisper(Wisp2超级增强子相关的RNA)鉴定为富含心脏成纤维细胞的lncRNA,可调节损伤后的心脏纤维化。在心肌梗塞(MI)的鼠模型和患有主动脉狭窄的人类患者的心脏组织中,耳语的表达均与心脏纤维化相关。使用修饰的反义寡核苷酸(ASO)进行体外功能丧失的方法证明,Wisper是心脏成纤维细胞增殖,迁移和存活的特定调节剂。因此,ASO介导的Wisper体内沉默可减轻MI诱导的纤维化和心脏功能障碍。在功能上,Wisper调节心脏成纤维细胞基因表达程序,这些程序对于细胞身份,细胞外基质沉积,增殖和存活至关重要。此外,它与TIA1相关蛋白的结合使它能够控制赖氨酰羟化酶2的纤维化形式的表达,牵涉胶原的交联和基质的稳定化。总之,我们的发现将Wisper鉴定为富含心脏成纤维细胞的超增强子相关的lncRNA,它代表了一种有吸引力的治疗靶点,可减少因MI引起的心脏纤维化的病理发展,并防止受损心脏的不良重塑。

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