Targeting the transmembrane cytokine co-receptor neuropilin-1 in distal tubules improves renal injury and fibrosis

Nat Commun. 2024 Jul 8;15(1):5731. doi: 10.1038/s41467-024-50121-6.

Abstract

Neuropilin-1 (NRP1), a co-receptor for various cytokines, including TGF-β, has been identified as a potential therapeutic target for fibrosis. However, its role and mechanism in renal fibrosis remains elusive. Here, we show that NRP1 is upregulated in distal tubular (DT) cells of patients with transplant renal insufficiency and mice with renal ischemia-reperfusion (I-R) injury. Knockout of Nrp1 reduces multiple endpoints of renal injury and fibrosis. We find that Nrp1 facilitates the binding of TNF-α to its receptor in DT cells after renal injury. This signaling results in a downregulation of lysine crotonylation of the metabolic enzyme Cox4i1, decreases cellular energetics and exacerbation of renal injury. Furthermore, by single-cell RNA-sequencing we find that Nrp1-positive DT cells secrete collagen and communicate with myofibroblasts, exacerbating acute kidney injury (AKI)-induced renal fibrosis by activating Smad3. Dual genetic deletion of Nrp1 and Tgfbr1 in DT cells better improves renal injury and fibrosis than either single knockout. Together, these results reveal that targeting of NRP1 represents a promising strategy for the treatment of AKI and subsequent chronic kidney disease.

MeSH terms

  • Acute Kidney Injury* / genetics
  • Acute Kidney Injury* / metabolism
  • Acute Kidney Injury* / pathology
  • Animals
  • Collagen / metabolism
  • Fibrosis*
  • Humans
  • Kidney Tubules / metabolism
  • Kidney Tubules / pathology
  • Male
  • Mice
  • Mice, Inbred C57BL
  • Mice, Knockout*
  • Myofibroblasts / metabolism
  • Myofibroblasts / pathology
  • Neuropilin-1* / genetics
  • Neuropilin-1* / metabolism
  • Receptor, Transforming Growth Factor-beta Type I* / genetics
  • Receptor, Transforming Growth Factor-beta Type I* / metabolism
  • Reperfusion Injury* / genetics
  • Reperfusion Injury* / metabolism
  • Reperfusion Injury* / pathology
  • Signal Transduction
  • Smad3 Protein* / genetics
  • Smad3 Protein* / metabolism
  • Tumor Necrosis Factor-alpha / metabolism

Substances

  • Neuropilin-1
  • Receptor, Transforming Growth Factor-beta Type I
  • Smad3 Protein
  • Tumor Necrosis Factor-alpha
  • TGFBR1 protein, human
  • NRP1 protein, human
  • Collagen