4.4 Article

Exploring the relevance of NUP93 variants in steroid-resistant nephrotic syndrome using next generation sequencing and a fly kidney model

期刊

PEDIATRIC NEPHROLOGY
卷 37, 期 11, 页码 2643-2656

出版社

SPRINGER
DOI: 10.1007/s00467-022-05440-5

关键词

NUP93; SRNS; FSGS; Podocyte; Nephrocyte

资金

  1. National Institute for Health Research (NIHR) Biomedical Research Centre based at Guy's and St Thomas' NHS Foundation Trust
  2. King's College London
  3. Kids Kidney Research
  4. Nephrotic Syndrome Trust
  5. Kidney Research UK
  6. National Institute for Health Research (NIHR) [RG65966]
  7. Guys and St Thomas' Hospital Charity
  8. British Kidney Patients' Association
  9. British Heart Foundation
  10. MRC Precision Medicine [MR/RO13942/1]
  11. Nephrotic Syndrome Trust (NeST)

向作者/读者索取更多资源

Variants in NUP93 gene have been identified as a cause of paediatric SRNS. In this study, NUP93 variants were detected in paediatric onset SRNS patients and the functional effects of Nup93 depletion were demonstrated in a fly nephrocyte model.
Background Variants in genes encoding nuclear pore complex (NPC) proteins are a newly identified cause of paediatric steroid-resistant nephrotic syndrome (SRNS). Recent reports describing NUP93 variants suggest these could be a significant cause of paediatric onset SRNS. We report NUP93 cases in the UK and demonstrate in vivo functional effects of Nup93 depletion in a fly (Drosophila melanogaster) nephrocyte model. Methods Three hundred thirty-seven paediatric SRNS patients from the National cohort of patients with Nephrotic Syndrome (NephroS) were whole exome and/or whole genome sequenced. Patients were screened for over 70 genes known to be associated with Nephrotic Syndrome (NS). D. melanogaster Nup93 knockdown was achieved by RNA interference using nephrocyte-restricted drivers. Results Six novel homozygous and compound heterozygous NUP93 variants were detected in 3 sporadic and 2 familial paediatric onset SRNS characterised histologically by focal segmental glomerulosclerosis (FSGS) and progressing to kidney failure by 12 months from clinical diagnosis. Silencing of the two orthologs of human NUP93 expressed in D. melanogaster, Nup93-1, and Nup93-2 resulted in significant signal reduction of up to 82% in adult pericardial nephrocytes with concomitant disruption of NPC protein expression. Additionally, nephrocyte morphology was highly abnormal in Nup93-1 and Nup93-2 silenced flies surviving to adulthood. Conclusion We expand the spectrum of NUP93 variants detected in paediatric onset SRNS and demonstrate its incidence within a national cohort. Silencing of either D. melanogaster Nup93 ortholog caused a severe nephrocyte phenotype, signaling an important role for the nucleoporin complex in podocyte biology.

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