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Single-cell transcriptomics identifies aberrant glomerular angiogenic signalling in the early stages of WT1 kidney disease.
Chandler, Jennifer C; Jafree, Daniyal J; Malik, Saif; Pomeranz, Gideon; Ball, Mary; Kolatsi-Joannou, Maria; Piapi, Alice; Mason, William J; Benest, Andrew V; Bates, David O; Letunovska, Aleksandra; Al-Saadi, Reem; Rabant, Marion; Boyer, Olivia; Pritchard-Jones, Kathy; Winyard, Paul J; Mason, Andrew S; Woolf, Adrian S; Waters, Aoife M; Long, David A.
Afiliação
  • Chandler JC; Developmental Biology and Cancer Research and Teaching Department, University College London Great Ormond Street Institute of Child Health, London, UK.
  • Jafree DJ; UCL Centre for Kidney and Bladder Health, London, UK.
  • Malik S; Developmental Biology and Cancer Research and Teaching Department, University College London Great Ormond Street Institute of Child Health, London, UK.
  • Pomeranz G; UCL Centre for Kidney and Bladder Health, London, UK.
  • Ball M; UCL MB/PhD Programme, Faculty of Medical Sciences, University College London, London, UK.
  • Kolatsi-Joannou M; Developmental Biology and Cancer Research and Teaching Department, University College London Great Ormond Street Institute of Child Health, London, UK.
  • Piapi A; UCL Centre for Kidney and Bladder Health, London, UK.
  • Mason WJ; Developmental Biology and Cancer Research and Teaching Department, University College London Great Ormond Street Institute of Child Health, London, UK.
  • Benest AV; UCL Centre for Kidney and Bladder Health, London, UK.
  • Bates DO; Developmental Biology and Cancer Research and Teaching Department, University College London Great Ormond Street Institute of Child Health, London, UK.
  • Letunovska A; UCL Centre for Kidney and Bladder Health, London, UK.
  • Al-Saadi R; Developmental Biology and Cancer Research and Teaching Department, University College London Great Ormond Street Institute of Child Health, London, UK.
  • Rabant M; UCL Centre for Kidney and Bladder Health, London, UK.
  • Boyer O; Developmental Biology and Cancer Research and Teaching Department, University College London Great Ormond Street Institute of Child Health, London, UK.
  • Pritchard-Jones K; Developmental Biology and Cancer Research and Teaching Department, University College London Great Ormond Street Institute of Child Health, London, UK.
  • Winyard PJ; UCL Centre for Kidney and Bladder Health, London, UK.
  • Mason AS; Endothelial Quiescence Group and Tumour and Vascular Biology Laboratories, Division of Cancer and Stem Cells, Centre for Cancer Sciences, School of Medicine, Biodiscovery Institute, University of Nottingham, Nottingham, UK.
  • Woolf AS; Endothelial Quiescence Group and Tumour and Vascular Biology Laboratories, Division of Cancer and Stem Cells, Centre for Cancer Sciences, School of Medicine, Biodiscovery Institute, University of Nottingham, Nottingham, UK.
  • Waters AM; Pan-African Cancer Research Institute, University of Pretoria, Hatfield, South Africa.
  • Long DA; Developmental Biology and Cancer Research and Teaching Department, University College London Great Ormond Street Institute of Child Health, London, UK.
J Pathol ; 264(2): 212-227, 2024 Oct.
Article em En | MEDLINE | ID: mdl-39177649
ABSTRACT
WT1 encodes a podocyte transcription factor whose variants can cause an untreatable glomerular disease in early childhood. Although WT1 regulates many podocyte genes, it is poorly understood which of them are initiators in disease and how they subsequently influence other cell-types in the glomerulus. We hypothesised that this could be resolved using single-cell RNA sequencing (scRNA-seq) and ligand-receptor analysis to profile glomerular cell-cell communication during the early stages of disease in mice harbouring an orthologous human mutation in WT1 (Wt1R394W/+). Podocytes were the most dysregulated cell-type in the early stages of Wt1R394W/+ disease, with disrupted angiogenic signalling between podocytes and the endothelium, including the significant downregulation of transcripts for the vascular factors Vegfa and Nrp1. These signalling changes preceded glomerular endothelial cell loss in advancing disease, a feature also observed in biopsy samples from human WT1 glomerulopathies. Addition of conditioned medium from murine Wt1R394W/+ primary podocytes to wild-type glomerular endothelial cells resulted in impaired endothelial looping and reduced vascular complexity. Despite the loss of key angiogenic molecules in Wt1R394W/+ podocytes, the pro-vascular molecule adrenomedullin was upregulated in Wt1R394W/+ podocytes and plasma and its further administration was able to rescue the impaired looping observed when glomerular endothelium was exposed to Wt1R394W/+ podocyte medium. In comparative analyses, adrenomedullin upregulation was part of a common injury signature across multiple murine and human glomerular disease datasets, whilst other gene changes were unique to WT1 disease. Collectively, our study describes a novel role for altered angiogenic signalling in the initiation of WT1 glomerulopathy. We also identify adrenomedullin as a proangiogenic factor, which despite being upregulated in early injury, offers an insufficient protective response due to the wider milieu of dampened vascular signalling that results in endothelial cell loss in later disease. © 2024 The Author(s). The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Transdução de Sinais / Proteínas WT1 / Podócitos / Análise de Célula Única / Transcriptoma / Glomérulos Renais Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Transdução de Sinais / Proteínas WT1 / Podócitos / Análise de Célula Única / Transcriptoma / Glomérulos Renais Idioma: En Ano de publicação: 2024 Tipo de documento: Article