SARS-CoV-2-Derived RNA Fragment Induces Myocardial Dysfunction via siRNA-like Suppression of Mitochondrial ATP Synthase.

SARS-CoV-2 衍生 RNA 片段通过 siRNA 样抑制线粒体 ATP 合成酶诱导心肌功能障碍

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作者:Nukaga Shota, Fujiwara-Tani Rina, Mori Takuya, Kawahara Isao, Nishida Ryoichi, Miyagawa Yoshihiro, Goto Kei, Ohmori Hitoshi, Fujii Kiyomu, Sasaki Takamitsu, Nakashima Chie, Luo Yi, Mori Shiori, Kishi Shingo, Ogata Ruiko, Kuniyasu Hiroki
Myocardial injury is a critical determinant of prognosis in severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection; however, its underlying mechanisms remain incompletely understood. In this study, we examined the effects of SARS-CoV-2-derived RNA fragments on human cardiomyocytes. We identified a 19-nucleotide sequence within the viral genome that shares complete sequence homology with the human F1F0 ATP synthase subunit alpha gene (ATP5A). This sequence was found to associate with Argonaute 2 (AGO2) and downregulate ATP5A expression via a mechanism analogous to RNA interference. Consequently, oxidative phosphorylation was suppressed in cardiomyocytes, leading to impaired myocardial maturation and the emergence of heart failure-like phenotypes. Notably, exosome-mimetic liposomal delivery of this RNA fragment to cardiomyocytes reproduced the ATP5A-suppressive effect. These findings suggest that SARS-CoV-2-derived RNA fragments may contribute to myocardial injury through the siRNA-like modulation of mitochondrial gene expression. Further validation in animal models and patient-derived materials is warranted.

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