Laboratory for Stroke Research and Noncoding RNA Biology, JFK Neuroscience Institute, HackensackMeridian Health JFK University Medical Center, Edison, NJ, 08820, USA.
Laboratory for Stroke Research and Noncoding RNA Biology, JFK Neuroscience Institute, HackensackMeridian Health JFK University Medical Center, Edison, NJ, 08820, USA; Department of Neurology, Hackensack Meridian School of Medicine, Nutley, NJ, 07110, USA.
Neurochem Int. 2021 Nov;150:105149. doi: 10.1016/j.neuint.2021.105149. Epub 2021 Aug 3.
Enhancer-derived RNAs (eRNAs) are a new class of long noncoding RNA that have roles in modulating enhancer-mediated gene transcription, which ultimately influences phenotypic outcomes. We recently published the first study mapping genome-wide eRNA expression in the male mouse cortex during ischemic stroke and identified 77 eRNAs that were significantly altered following a 1 h middle cerebral artery occlusion (MCAO) and 6 h of reperfusion, as compared to sham controls. Knockdown of one such stroke-induced eRNA - eRNA_06347 - resulted in significantly larger infarcts, demonstrating a role for eRNA_06347 in modulating the post-stroke pathophysiology in males. In the current study, we applied quantitative real-time PCR to evaluate whether the 77 eRNAs identified in the male cortex also show altered expression in the post-stroke female cortex. Using age-matched and time-matched female mice, we found that only a subset of the 77 eRNAs were detected in the post-stroke female cortex. Of these, only a small fraction showed similar temporal expression characteristics as males, including eRNA_06347 which was highly induced in both sexes. Knockdown of eRNA_06347 in the female cortex resulted in significantly increased infarct volumes that were closely matched to those in males, indicating that eRNA_06347 modulates the post-stroke pathophysiology similarly in males and females. This suggests a common underlying role for eRNA_06347 in the two sexes. Overall, this is the first study to evaluate eRNA expression and perturbation in the female cortex during stroke, and present a comparative analysis between males and females. Our findings show that eRNAs have sex-dependent and sex-independent expression patterns that may be of significance to the pathophysiological responses to stroke in the two sexes.
增强子来源的 RNA(eRNAs)是一类新的长非编码 RNA,在调节增强子介导的基因转录中发挥作用,进而影响表型结果。我们最近发表了第一项研究,该研究在雄性小鼠大脑皮质中绘制了全基因组 eRNA 表达图谱,在 1 小时大脑中动脉闭塞(MCAO)和 6 小时再灌注后,与假手术对照组相比,鉴定出 77 个 eRNA 显著改变。敲低其中一个诱导型中风 eRNA - eRNA_06347 - 导致梗死体积明显增大,证明 eRNA_06347 在调节雄性中风后的病理生理学中起作用。在本研究中,我们应用实时定量 PCR 来评估在雄性皮质中鉴定出的 77 个 eRNA 是否也在中风后的雌性皮质中改变表达。使用年龄匹配和时间匹配的雌性小鼠,我们发现只有一小部分 77 个 eRNA 在中风后的雌性皮质中检测到。其中,只有一小部分显示出与雄性相似的时间表达特征,包括在两性中均高度诱导的 eRNA_06347。在雌性皮质中敲低 eRNA_06347 导致梗死体积明显增加,与雄性非常匹配,表明 eRNA_06347 以相似的方式调节雄性和雌性中风后的病理生理学。这表明 eRNA_06347 在两性中具有共同的潜在作用。总体而言,这是第一项评估中风期间雌性皮质中 eRNA 表达和扰动的研究,并对雄性和雌性之间进行了比较分析。我们的研究结果表明,eRNA 具有性别依赖性和性别独立性的表达模式,这可能对两性中风后的病理生理反应具有重要意义。