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Inhibition of HIF-prolyl hydroxylase promotes renal tubule regeneration via the reprogramming of renal proximal tubular cells

Jing Li1,2,3,4,5,6, Li-ting Chen1,2,3,4,5, You-liang Wang1,2,3,4,5, Mei-xia Kang1,2,3,4,5, Shi-ting Liang1,2,3,4,5, Xi-zhen Hong1,2,3,4,5, Fan Fan Hou1,2,3,4,5, Fu-jian Zhang1,2,3,4,5
1 Division of Nephrology, Nanfang Hospital, Southern Medical University
2 National Clinical Research Center for Kidney Disease
3 State Key Laboratory of Organ Failure Research
4 Guangdong Provincial Institute of Nephrology
5 Guangdong Provincial Key Laboratory of Renal Failure Research, Guangzhou 510515, China
6 Department of Critical Care Medicine, The Affiliated Cancer Hospital of Zhengzhou University & Henan Cancer Hospital, Zhengzhou 450008, China
Correspondence to: Fu-jian Zhang: flykidney@163.com,
DOI: 10.1038/s41401-024-01445-y
Received: 6 June 2024
Accepted: 24 November 2024
Advance online: 7 January 2025

Abstract

The ability of the mammalian kidney to repair or regenerate after acute kidney injury (AKI) is very limited. The maladaptive repair of AKI promotes progression to chronic kidney disease (CKD). Therefore, new strategies to promote the repair/regeneration of injured renal tubules after AKI are urgently needed. Hypoxia has been shown to induce heart regeneration in adult mice. However, it is unknown whether hypoxia can induce kidney regeneration after AKI. In this study, we used a prolyl hydroxylase domain inhibitor (PHDI), MK-8617, to mimic hypoxic conditions and found that MK-8617 significantly ameliorated ischemia reperfusion injury (IRI)-induced AKI. We also showed that MK-8617 dramatically facilitated renal tubule regeneration by promoting the proliferation of renal proximal tubular cells (RPTCs) after IRI-induced AKI. We then performed bulk mRNA sequencing and discovered that multiple nephrogenesis-related genes were significantly upregulated with MK-8617 pretreatment. We also showed that MK-8617 may alleviate proximal tubule injury by stabilizing the HIF-1α protein specifically in renal proximal tubular cells. Furthermore, we demonstrated that MK-8617 promotes the reprogramming of renal proximal tubular cells to Sox9+ renal progenitor cells and the regeneration of renal proximal tubules. In summary, we report that the inhibition of prolyl hydroxylase improves renal proximal tubule regeneration after IRI-induced AKI by promoting the reprogramming of renal proximal tubular cells to Sox9+ renal progenitor cells.
Keywords: hypoxia; prolyl hydroxylase domain inhibitor; HIF-1α; renal proximal tubular cells; chemical reprogramming; Sox9+ renal progenitor cells; renal regeneration

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