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Methylation in pericytes after acute injury promotes chronic kidney disease
Yu-Hsiang Chou, Szu-Yu Pan, Yu-Han Shao, Hong-Mou Shih, Shi-Yao Wei, Chun-Fu Lai, Wen-Chih Chiang, Claudia Schrimpf, Kai-Chien Yang, Liang-Chuan Lai, Yung-Ming Chen, Tzong-Shinn Chu, Shuei-Liong Lin
Yu-Hsiang Chou, Szu-Yu Pan, Yu-Han Shao, Hong-Mou Shih, Shi-Yao Wei, Chun-Fu Lai, Wen-Chih Chiang, Claudia Schrimpf, Kai-Chien Yang, Liang-Chuan Lai, Yung-Ming Chen, Tzong-Shinn Chu, Shuei-Liong Lin
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Research Article Nephrology

Methylation in pericytes after acute injury promotes chronic kidney disease

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Abstract

The origin and fate of renal myofibroblasts is not clear after acute kidney injury (AKI). Here, we demonstrate that myofibroblasts were activated from quiescent pericytes (qPericytes) and the cell numbers increased after ischemia/reperfusion injury–induced AKI (IRI-AKI). Myofibroblasts underwent apoptosis during renal recovery but one-fifth of them survived in the recovered kidneys on day 28 after IRI-AKI and their cell numbers increased again after day 56. Microarray data showed the distinctive gene expression patterns of qPericytes, activated pericytes (aPericytes, myofibroblasts), and inactivated pericytes (iPericytes) isolated from kidneys before, on day 7, and on day 28 after IRI-AKI. Hypermethylation of the Acta2 repressor Ybx2 during IRI-AKI resulted in epigenetic modification of iPericytes to promote the transition to chronic kidney disease (CKD) and aggravated fibrogenesis induced by a second AKI induced by adenine. Mechanistically, transforming growth factor-β1 decreased the binding of YBX2 to the promoter of Acta2 and induced Ybx2 hypermethylation, thereby increasing α-smooth muscle actin expression in aPericytes. Demethylation by 5-azacytidine recovered the microvascular stabilizing function of aPericytes, reversed the profibrotic property of iPericytes, prevented AKI-CKD transition, and attenuated fibrogenesis induced by a second adenine-AKI. In conclusion, intervention to erase hypermethylation of pericytes after AKI provides a strategy to stop the transition to CKD.

Authors

Yu-Hsiang Chou, Szu-Yu Pan, Yu-Han Shao, Hong-Mou Shih, Shi-Yao Wei, Chun-Fu Lai, Wen-Chih Chiang, Claudia Schrimpf, Kai-Chien Yang, Liang-Chuan Lai, Yung-Ming Chen, Tzong-Shinn Chu, Shuei-Liong Lin

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Figure 3

Inactivated pericytes retained a higher potential for fibrosis and cell proliferation in vitro.

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Inactivated pericytes retained a higher potential for fibrosis and cell ...
(A) Primary cultures of qPericytes and iPericytes from the kidneys before and on day 28 after IRI-AKI, respectively, were exposed to TGF-β1 or Ctrl culture medium for 16 hours. Dot charts showed the expression of Acta2, Col1a1, and Timp1 assessed by quantitative PCR. The expression levels were normalized by Gapdh. Horizontal bars represent the mean, error bars represent the SEM. *P < 0.05, **P < 0.01 by 1-way ANOVA with post hoc Tukey’s correction. n = 4 for each group. (B) Line chart showing the cell proliferation of qPericytes and iPericytes assessed by 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assays. Data are expressed as the mean ± SEM. *P < 0.05 by t test at each time point. n = 4 for each group.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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