Small fibre neuropathy in Fabry disease: a human-derived neuronal in vitro disease model and pilot data

Author:

Klein Thomas1,Grüner Julia1ORCID,Breyer Maximilian1,Schlegel Jan2,Schottmann Nicole Michelle1,Hofmann Lukas1,Gauss Kevin3,Mease Rebecca3,Erbacher Christoph1,Finke Laura1,Klein Alexandra1,Klug Katharina1,Karl-Schöller Franziska1,Vignolo Bettina1,Reinhard Sebastian2,Schneider Tamara4,Günther Katharina5,Fink Julian6,Dudek Jan7,Maack Christoph7ORCID,Klopocki Eva4,Seibel Jürgen6,Edenhofer Frank5,Wischmeyer Erhard8,Sauer Markus2,Üçeyler Nurcan19ORCID

Affiliation:

1. Department of Neurology, University Hospital Würzburg , 97080 Würzburg , Germany

2. Department of Biotechnology and Biophysics, University of Würzburg , 97074 Würzburg , Germany

3. Medical Biophysics, Institute for Physiology and Pathophysiology, Heidelberg University , 69120 Heidelberg , Germany

4. Institute for Human Genetics, University of Würzburg , 97074 Würzburg , Germany

5. Institute of Anatomy and Cell Biology, University of Würzburg , 97070 Würzburg , Germany

6. Institute of Organic Chemistry, University of Würzburg , 97074 Würzburg , Germany

7. Comprehensive Heart Failure Center CHFC, University Hospital Würzburg , 97080 Würzburg , Germany

8. Institute of Physiology, University of Würzburg , 97070 Würzburg , Germany

9. Würzburg Fabry Center for Interdisciplinary Therapy (FAZIT), University Hospital Würzburg , 97080 Würzburg , Germany

Abstract

Abstract Acral burning pain triggered by fever, thermal hyposensitivity and skin denervation are hallmarks of small fibre neuropathy in Fabry disease, a life-threatening X-linked lysosomal storage disorder. Variants in the gene encoding alpha-galactosidase A may lead to impaired enzyme activity with cellular accumulation of globotriaosylceramide. To study the underlying pathomechanism of Fabry-associated small fibre neuropathy, we generated a neuronal in vitro disease model using patient-derived induced pluripotent stem cells from three Fabry patients and one healthy control. We further generated an isogenic control line via gene editing. We subjected induced pluripotent stem cells to targeted peripheral neuronal differentiation and observed intra-lysosomal globotriaosylceramide accumulations in somas and neurites of Fabry sensory neurons using super-resolution microscopy. At functional level, patch-clamp analysis revealed a hyperpolarizing shift of voltage-gated sodium channel steady-state inactivation kinetics in isogenic control neurons compared with healthy control neurons (P < 0.001). Moreover, we demonstrate a drastic increase in Fabry sensory neuron calcium levels at 39°C mimicking clinical fever (P < 0.001). This pathophysiological phenotype was accompanied by thinning of neurite calibres in sensory neurons differentiated from induced pluripotent stem cells derived from Fabry patients compared with healthy control cells (P < 0.001). Linear–nonlinear cascade models fit to spiking responses revealed that Fabry cell lines exhibit altered single neuron encoding properties relative to control. We further observed mitochondrial aggregation at sphingolipid accumulations within Fabry sensory neurites utilizing a click chemistry approach together with mitochondrial dysmorphism compared with healthy control cells. We pioneer pilot insights into the cellular mechanisms contributing to pain, thermal hyposensitivity and denervation in Fabry small fibre neuropathy and pave the way for further mechanistic in vitro studies in Fabry disease and the development of novel treatment approaches.

Funder

German Research Foundation

Interdisciplinary Center for Clinical Research

University of Würzburg

Collaborative Research Center

DFG

European Research Council

Austrian Science Fund FWF

Publisher

Oxford University Press (OUP)

Reference86 articles.

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2. Fabry disease;Germain;Orphanet J Rare Dis,2010

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4. Characterization of pain in Fabry disease;Üçeyler;Clin J Pain,2014

5. α-Galactosidase A deficient mice: A model of Fabry disease;Ohshima;Proc Natl Acad Sci USA,1997

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