蛋白二硫化物异构酶参与雄性小鼠纤 维素 C 缺乏引起的扩张型心肌病的研究

He Xuan, Chenghao Fan, Xue Bai, Anteng Shi, Yu Nie, Shengshou Hu, Hong Lian
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引用次数: 0

摘要

编码丝蛋白C的FLNC基因的功能缺失变异导致扩张型心肌病和危及生命的心律失常的高风险。针对flnc相关扩张型心肌病潜在机制的治疗仍然有限。在本研究中,我们观察到小鼠心肌细胞中Flnc的缺失导致明显的心室扩张、心功能障碍和心脏纤维化。这种表型与人类flnc相关的扩张型心肌病非常相似。RNA测序分析显示,在flnc缺失的心脏组织中,蛋白二硫异构酶(PDI)被激活,免疫印迹证实了这一点。在心肌细胞特异性flnc缺失小鼠中,用特异性PDI抑制剂E64FC26治疗可改善心功能,减少心肌纤维化,减少心肌细胞凋亡。我们提供的证据表明,PDI参与了丝蛋白C缺乏引起的心脏重塑,并且PDI抑制剂治疗对Flnc缺失引起的扩张型心肌病小鼠产生了有益的作用。我们的研究结果表明PDI可能是flnc相关扩张型心肌病的一个有希望的治疗靶点。
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Protein Disulfide Isomerase Involvement in Dilated Cardiomyopathy Caused by Filamin C Deficiency in Male Mice

Loss-of-function variants in the FLNC gene, which encodes Filamin C, cause dilated cardiomyopathy with a high risk of life-threatening arrhythmias. Therapies targeting the underlying mechanism of FLNC-related dilated cardiomyopathy remain limited. In this study, we observed that deletion of Flnc in cardiomyocytes of mice led to prominent ventricular dilation, cardiac dysfunction, and cardiac fibrosis. This phenotype closely resembles FLNC-related dilated cardiomyopathy in humans. RNA sequencing analysis revealed activation of protein disulfide isomerase (PDI) in Flnc-deleted cardiac tissues, as confirmed by immunoblotting. Treatment with the specific PDI inhibitor E64FC26 improved cardiac function, reduced cardiac fibrosis, and decreased cardiomyocyte apoptosis in cardiomyocyte-specific Flnc-deleted mice. We provide evidence that PDI is involved in the cardiac remodeling induced by Filamin C deficiency, and that treatment with the PDI inhibitor resulted in beneficial effects in mice with dilated cardiomyopathy caused by Flnc deletion. Our findings suggest that PDI could be a promising therapeutic target for FLNC-related dilated cardiomyopathy.

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期刊介绍: The Journal of Cellular and Molecular Medicine serves as a bridge between physiology and cellular medicine, as well as molecular biology and molecular therapeutics. With a 20-year history, the journal adopts an interdisciplinary approach to showcase innovative discoveries. It publishes research aimed at advancing the collective understanding of the cellular and molecular mechanisms underlying diseases. The journal emphasizes translational studies that translate this knowledge into therapeutic strategies. Being fully open access, the journal is accessible to all readers.
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