Mathai Clinton, Jourd'heuil Frances, Pham Le Gia Cat, Gilliard Kurrim, Howard Dennis, Balnis Joseph, Jaitovich Ariel, Chittur Sridar V, Rilley Mark, Peredo-Wende Ruben, Ammoura Ibrahim, Shin Sandra J, Barroso Margarida, Barra Jonathan, Shishkova Evgenia, Coon Joshua J, Lopez-Soler Reynold I, Jourd'heuil David
bioRxiv. 2023 May 11:2023.05.10.540045. doi: 10.1101/2023.05.10.540045.
Identifying novel regulators of vascular smooth muscle cell function is necessary to further understand cardiovascular diseases. We previously identified cytoglobin, a hemoglobin homolog, with myogenic and cytoprotective roles in the vasculature. The specific mechanism of action of cytoglobin is unclear but does not seem to be related to oxygen transport or storage like hemoglobin. Herein, transcriptomic profiling of injured carotid arteries in cytoglobin global knockout mice revealed that cytoglobin deletion accelerated the loss of contractile genes and increased DNA damage. Overall, we show that cytoglobin is actively translocated into the nucleus of vascular smooth muscle cells through a redox signal driven by NOX4. We demonstrate that nuclear cytoglobin heterodimerizes with the non-histone chromatin structural protein HMGB2. Our results are consistent with a previously unknown function by which a non-erythrocytic hemoglobin inhibits DNA damage and regulates gene programs in the vasculature by modulating the genome-wide binding of HMGB2.
识别血管平滑肌细胞功能的新型调节因子对于进一步了解心血管疾病至关重要。我们之前鉴定出细胞珠蛋白,一种血红蛋白同源物,在脉管系统中具有生肌和细胞保护作用。细胞珠蛋白的具体作用机制尚不清楚,但似乎不像血红蛋白那样与氧气运输或储存有关。在此,对细胞珠蛋白全球敲除小鼠受损颈动脉的转录组分析显示,细胞珠蛋白缺失加速了收缩基因的丧失并增加了DNA损伤。总体而言,我们表明细胞珠蛋白通过由NOX4驱动的氧化还原信号被主动转运到血管平滑肌细胞的细胞核中。我们证明核细胞珠蛋白与非组蛋白染色质结构蛋白HMGB2异源二聚化。我们的结果与一种先前未知的功能一致,即一种非红细胞血红蛋白通过调节HMGB2在全基因组范围内的结合来抑制DNA损伤并调节脉管系统中的基因程序。