Proteomic quantitative study of dorsal root ganglia and sciatic nerve in type 2 diabetic mice
Author
Date
2022-01Permanent link
https://hdl.handle.net/11351/8903DOI
10.1016/j.molmet.2021.101408
ISSN
2212-8778
WOS
000747190100004
PMID
34856394
Abstract
Objective
Peripheral neuropathy is the most common and debilitating complication of type 2 diabetes, leading to sensory loss, dysautonomia, hyperalgesia, and spontaneous noxious sensations. Despite the clinical and economic burden of diabetic neuropathy, no effective treatment is available. More preclinical research must be conducted in order to gain further understanding of the aetiology of the disease and elucidate new therapeutic targets.
Methods
The proteome of lumbar dorsal root ganglia and sciatic nerve of BKS-db/db mice, which contain a mutation of the leptin receptor and are an established type 2 diabetes model, was characterized for the first time by tandem mass tag labelling and mass spectrometry analysis.
Results
Proteomic analysis showed differentially expressed proteins grouped into functional clusters in db/db peripheral nerves compared to control mice, underlining reduced glycolytic and TCA cycle metabolism, higher lipid catabolism, upregulation of muscle-like proteins in DRG and downregulation in SCN, increased cytoskeleton-related proteins, a mild dysregulation of folding chaperones, activation of acute-phase and inflammatory response, and alterations in glutathione metabolism and oxidative stress related proteins.
Conclusions
Our data validate previous transcriptomic and metabolomic results and uncover new pathways altered in diabetic neuropathy. Our results point out that energetic deficiency could represent the main mechanism of neurodegeneration observed in diabetic neuropathy. These findings may provide important information to select appropriate targets to develop new therapeutic strategies.
Keywords
Diabetes; Dorsal root ganglia; Sciatic nerveBibliographic citation
Leal-Julià M, Vilches JJ, Onieva A, Verdés S, Sánchez Á, Chillón M, et al. Proteomic quantitative study of dorsal root ganglia and sciatic nerve in type 2 diabetic mice. Mol Metab. 2022 Jan;55:101408.
Audience
Professionals
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- VHIR - Articles científics [1751]
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