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Multidimensional analysis and therapeutic development using patient iPSC–derived disease models of Wolfram syndrome
Rie Asada Kitamura, Kristina G. Maxwell, Wenjuan Ye, Kelly Kries, Cris M. Brown, Punn Augsornworawat, Yoel Hirsch, Martin M. Johansson, Tzvi Weiden, Joseph Ekstein, Joshua Cohen, Justin Klee, Kent Leslie, Anton Simeonov, Mark J. Henderson, Jeffrey R. Millman, Fumihiko Urano
Rie Asada Kitamura, Kristina G. Maxwell, Wenjuan Ye, Kelly Kries, Cris M. Brown, Punn Augsornworawat, Yoel Hirsch, Martin M. Johansson, Tzvi Weiden, Joseph Ekstein, Joshua Cohen, Justin Klee, Kent Leslie, Anton Simeonov, Mark J. Henderson, Jeffrey R. Millman, Fumihiko Urano
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Research Article Endocrinology Genetics

Multidimensional analysis and therapeutic development using patient iPSC–derived disease models of Wolfram syndrome

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Abstract

Wolfram syndrome is a rare genetic disorder largely caused by pathogenic variants in the WFS1 gene and manifested by diabetes mellitus, optic nerve atrophy, and progressive neurodegeneration. Recent genetic and clinical findings have revealed Wolfram syndrome as a spectrum disorder. Therefore, a genotype-phenotype correlation analysis is needed for diagnosis and therapeutic development. Here, we focus on the WFS1 c.1672C>T, p.R558C variant, which is highly prevalent in the Ashkenazi Jewish population. Clinical investigation indicated that patients carrying the homozygous WFS1 c.1672C>T, p.R558C variant showed mild forms of Wolfram syndrome phenotypes. Expression of WFS1 p.R558C was more stable compared with the other known recessive pathogenic variants associated with Wolfram syndrome. Human induced pluripotent stem cell–derived (iPSC-derived) islets (SC-islets) homozygous for WFS1 c.1672C>T variant recapitulated genotype-related Wolfram syndrome phenotypes. Enhancing residual WFS1 function through a combination treatment of chemical chaperones mitigated detrimental effects caused by the WFS1 c.1672C>T, p.R558C variant and increased insulin secretion in SC-islets. Thus, the WFS1 c.1672C>T, p.R558C variant causes a mild form of Wolfram syndrome phenotypes, which can be remitted with a combination treatment of chemical chaperones. We demonstrate that our patient iPSC–derived disease model provides a valuable platform for further genotype-phenotype analysis and therapeutic development for Wolfram syndrome.

Authors

Rie Asada Kitamura, Kristina G. Maxwell, Wenjuan Ye, Kelly Kries, Cris M. Brown, Punn Augsornworawat, Yoel Hirsch, Martin M. Johansson, Tzvi Weiden, Joseph Ekstein, Joshua Cohen, Justin Klee, Kent Leslie, Anton Simeonov, Mark J. Henderson, Jeffrey R. Millman, Fumihiko Urano

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Figure 5

Single-cell transcriptional evaluation of a combination treatment with 4-PBA and TUDCA on SC-β cells.

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Single-cell transcriptional evaluation of a combination treatment with 4...
(A) Uniform manifold approximation and projection (UMAP) plot from unsupervised clustering of combined transcriptional data from scRNA-Seq of W024, Ctrl (green); W024, P+T (blue); W121, Ctrl (purple); and W121, P+T (red) SC-β cell populations. Lower plots are UMAP plots split by experimental conditions. (B) Violin plots detailing log-normalized gene expression of β cell genes in the same populations as A. Log fold change and P values for violin plots are available in Supplemental Table 2. (C) Violin plots detailing log-normalized gene expression of ER stress and apoptotic genes in the same populations as A. Log fold change and P values for violin plots are available in Supplemental Table 3. (D) Gene Ontology (GO) and Reactome GSEA, quantified by the normalized enrichment score (NES), for pathways upregulated in the combined population of W024 and W121 SC-β cells treated with (pink) or without (blue) P+T. NES values, P values, FDR q values, and gene set lists are available in Supplemental Table 4.

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