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SUMOylation of Enzymes and Ion Channels in Sensory Neurons Protects against Metabolic Dysfunction, Neuropathy, and Sensory Loss in Diabetes

Authors :
Christian Njoo
Stefan G. Lechner
Mirko Moroni
Francisco J. Taberner
Faramarz Faghihi
Daniel Rangel Rojas
Thomas Fleming
Alexandra Andrieux
Nitin Agarwal
Gary R. Lewin
Pooja Gupta
Kiran Kumar Bali
Anne Dejean
Esther Herpel
Rohini Kuner
Peter P. Nawroth
Damir Omberbasic
Heidelberg University
Max Delbrück Center for Molecular Medicine [Berlin] (MDC)
Helmholtz-Gemeinschaft = Helmholtz Association
Organisation Nucléaire et Oncogenèse / Nuclear Organization and Oncogenesis
Institut Pasteur [Paris] (IP)-Institut National de la Santé et de la Recherche Médicale (INSERM)
Heidelberg University Hospital [Heidelberg]
This work was supported by Deutsche Forschungsgemeinschaft grants SFB1118 (project B06) (to N.A. and R.K.), SFB1118 (projects A04, S02, and S01) (to P.P.N., E.H., and T.F.), SFB1158 (project A01) (to S.G.L.), and SFB1158 (project A03) (to P.P.N.). R.K. is a member of the Molecular Medicine Partnership Unit, Heidelberg and a principal investigator in the Excellence Cluster 'CellNetworks' of Heidelberg University.
The authors are grateful to D. Baumgartl-Ahlert for technical assistance. We acknowledge support from the Interdisciplinary Neurobehavioral Core (INBC), the Proteomics facility, and the Metabolomics facility at Heidelberg University. We acknowledge support from the tissue bank of the National Centre for Tumour Diseases (NCT, Heidelberg, Germany) in accordance with the regulations of the tissue bank and approval from the ethics committee of Heidelberg University (Ethic Votes 206/2005 and 207/2005).
Institut Pasteur [Paris]-Institut National de la Santé et de la Recherche Médicale (INSERM)
Source :
Neuron, Neuron, 2020, 107 (6), pp.1141-1159.e7. ⟨10.1016/j.neuron.2020.06.037⟩, Neuron, Elsevier, 2020, 107 (6), pp.1141-1159.e7. ⟨10.1016/j.neuron.2020.06.037⟩
Publication Year :
2020
Publisher :
HAL CCSD, 2020.

Abstract

International audience; Diabetic peripheral neuropathy (DPN) is a highly frequent and debilitating clinical complication of diabetes that lacks therapies. Cellular oxidative stress regulates post-translational modifications, including SUMOylation. Here, using unbiased screens, we identified key enzymes in metabolic pathways and ion channels as novel molecular targets of SUMOylation that critically regulated their activity. Sensory neurons of diabetic patients and diabetic mice demonstrated changes in the SUMOylation status of metabolic enzymes and ion channels. In support of this, profound metabolic dysfunction, accelerated neuropathology, and sensory loss were observed in diabetic gene-targeted mice selectively lacking the ability to SUMOylate proteins in peripheral sensory neurons. TRPV1 function was impaired by diabetes-induced de-SUMOylation as well as by metabolic imbalance elicited by de-SUMOylation of metabolic enzymes, facilitating diabetic sensory loss. Our results unexpectedly uncover an endogenous post-translational mechanism regulating diabetic neuropathy in patients and mouse models that protects against metabolic dysfunction, nerve damage, and altered sensory perception.

Details

Language :
English
ISSN :
08966273
Database :
OpenAIRE
Journal :
Neuron, Neuron, 2020, 107 (6), pp.1141-1159.e7. ⟨10.1016/j.neuron.2020.06.037⟩, Neuron, Elsevier, 2020, 107 (6), pp.1141-1159.e7. ⟨10.1016/j.neuron.2020.06.037⟩
Accession number :
edsair.doi.dedup.....8a5d4cb795a7249a1ea608f05bd207d5