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A cardiac fibroblast-enriched micropeptide regulates inflammation in ischemia/reperfusion injury
Youchen Yan, Tingting Zhang, Xin He, Tailai Du, Gang Dai, Xingfeng Xu, Zhuohui Chen, Jialing Wu, Huimin Zhou, Yazhi Peng, Yan Li, Chen Liu, Xinxue Liao, Yugang Dong, Jing-song Ou, Zhan-Peng Huang
Youchen Yan, Tingting Zhang, Xin He, Tailai Du, Gang Dai, Xingfeng Xu, Zhuohui Chen, Jialing Wu, Huimin Zhou, Yazhi Peng, Yan Li, Chen Liu, Xinxue Liao, Yugang Dong, Jing-song Ou, Zhan-Peng Huang
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Research Article Cardiology Cell biology

A cardiac fibroblast-enriched micropeptide regulates inflammation in ischemia/reperfusion injury

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Abstract

Inflammation is a critical pathological process in myocardial infarction. Although immunosuppressive therapies can mitigate inflammatory responses and improve outcomes in myocardial infarction, they also increase the risk of infections. Identifying novel regulators of local cardiac inflammation could provide safer therapeutic targets for myocardial ischemia/reperfusion injury. In this study, we identified a previously uncharacterized micropeptide, which we named Inflammation Associated MicroPeptide (IAMP). IAMP is predominantly expressed in cardiac fibroblasts, and its expression is closely associated with cardiac inflammation. Downregulation of IAMP promotes, whereas its overexpression prevents, the transformation of cardiac fibroblasts into a more inflammatory phenotype under stressed/stimulated conditions, as evidenced by changes in the expression and secretion of proinflammatory cytokines. Consequently, loss of IAMP function leads to uncontrolled inflammation and worsens cardiac injury following ischemia/reperfusion surgery. Mechanistically, IAMP promotes the degradation of HIF-1α by interacting with its stabilizing partner HSP90 and, thus, suppresses the transcription of proinflammatory genes downstream of HIF-1α. This study underscores the significance of fibroblast-mediated inflammation in cardiac ischemia/reperfusion injury and highlights the therapeutic potential of targeting micropeptides for myocardial infarction.

Authors

Youchen Yan, Tingting Zhang, Xin He, Tailai Du, Gang Dai, Xingfeng Xu, Zhuohui Chen, Jialing Wu, Huimin Zhou, Yazhi Peng, Yan Li, Chen Liu, Xinxue Liao, Yugang Dong, Jing-song Ou, Zhan-Peng Huang

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Figure 3

IAMP expression is correlated with myocardial inflammation in heart.

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IAMP expression is correlated with myocardial inflammation in heart.
(A)...
(A) Relative expression of IAMP in hearts after IR injury from public RNA-Seq datasets. n = 3–4 for each group. (B) qPCR analysis of mRNA level of IAMP in mouse hearts after IR injury. n = 5–10 for each group. (C) Correlation between IAMP and Il6 mRNA levels in hearts mentioned in B. (D) Relative expression of IAMP in patients with different BMI. BMI ≤ 32 (n = 43); BMI > 32 (n = 19). (E and F) Body weights and gene expression in hearts of 8-month-old mice fed with normal (n = 10) or high-fat (n = 19) diets for 5 months. (G) Correlation between IAMP and Il6 expression in hearts mentioned in F. (H) Strategy of generating IAMP-KO mice by CRISPR/Cas9 editing and DNA sequence confirmation. (I) Western blotting of IAMP protein in hearts of control (Ctrl) and KO adult mice. (J) Western blotting of IAMP protein in cardiac fibroblasts isolated from Ctrl and KO adult mice. (K) qPCR analysis of mRNA levels of Il6, S100a8, and Mmp3 mRNA levels in cardiac fibroblasts isolated from Ctrl and KO adult mouse. n = 3 for each group. (L) ELISA detecting protein levels of IL-6, S100A8, and MMP3 in culture medium of cardiac fibroblasts isolated from Ctrl and KO adult mouse. n = 6 for each group. (M–O) Body weights, gene expression in hearts, and IL-6 protein levels in hearts of Ctrl and IAMP-KO mice fed with high-fat diets for 5 months. n = 6–7 for each group. *P < 0.05; **P < 0.01; ***P < 0.001; ****P < 0.0001, by 2-tailed Student’s t test (D–F and K–O), ANOVA with Tukey’s correction (A and B), or Pearson correlation (C and G).

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