Please use this identifier to cite or link to this item: https://dora.health.qld.gov.au/qldresearchjspui/handle/1/4028
Title: Patient-iPSC-Derived Kidney Organoids Show Functional Validation of a Ciliopathic Renal Phenotype and Reveal Underlying Pathogenetic Mechanisms
Authors: Trnka, P.
Bennetts, B.
Crawford, J.
Oshlack, A.
Little, M. H.
Simons, C.
Mallett, A.
Patel, C.
Forbes, T. A.
Howden, S. E.
Lawlor, K.
Phipson, B.
Maksimovic, J.
Hale, L.
Wilson, S.
Quinlan, C.
Ho, G.
Holman, K.
Issue Date: 2018
Source: 102, (5), 2018, p. 816-831
Pages: 816-831
Journal: American Journal of Human Genetics
Abstract: Despite the increasing diagnostic rate of genomic sequencing, the genetic basis of more than 50% of heritable kidney disease remains unresolved. Kidney organoids differentiated from induced pluripotent stem cells (iPSCs) of individuals affected by inherited renal disease represent a potential, but unvalidated, platform for the functional validation of novel gene variants and investigation of underlying pathogenetic mechanisms. In this study, trio whole-exome sequencing of a prospectively identified nephronophthisis (NPHP) proband and her parents identified compound-heterozygous variants in IFT140, a gene previously associated with NPHP-related ciliopathies. IFT140 plays a key role in retrograde intraflagellar transport, but the precise downstream cellular mechanisms responsible for disease presentation remain unknown. A one-step reprogramming and gene-editing protocol was used to derive both uncorrected proband iPSCs and isogenic gene-corrected iPSCs, which were differentiated to kidney organoids. Proband organoid tubules demonstrated shortened, club-shaped primary cilia, whereas gene correction rescued this phenotype. Differential expression analysis of epithelial cells isolated from organoids suggested downregulation of genes associated with apicobasal polarity, cell-cell junctions, and dynein motor assembly in proband epithelial cells. Matrigel cyst cultures confirmed a polarization defect in proband versus gene-corrected renal epithelium. As such, this study represents a “proof of concept” for using proband-derived iPSCs to model renal disease and illustrates dysfunctional cellular pathways beyond the primary cilium in the setting of IFT140 mutations, which are established for other NPHP genotypes.L20006996352018-05-08
2018-05-23
DOI: 10.1016/j.ajhg.2018.03.014
Resources: https://www.embase.com/search/results?subaction=viewrecord&id=L2000699635&from=exporthttp://dx.doi.org/10.1016/j.ajhg.2018.03.014 |
Keywords: down regulation;embryo;gene;gene editing;gene expression;gene mutation;genetic variability;heterozygote;human;human cell;IFT140 gene;induced pluripotent stem cell;kidney epithelium;cell junction;nuclear reprogramming;organoid;pathogenesis;phenotype;priority journal;protein assembly;whole exome sequencing;cell differentiation;dynein adenosine triphosphatasearticle;nephronophthisis;cilium;controlled study
Type: Article
Appears in Sites:Children's Health Queensland Publications

Show full item record

Page view(s)

26
checked on Mar 13, 2025

Google ScholarTM

Check

Altmetric


Items in DORA are protected by copyright, with all rights reserved, unless otherwise indicated.