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Original Article

Exp Neurobiol 2023; 32(6): 410-422

Published online December 31, 2023

https://doi.org/10.5607/en23027

© The Korean Society for Brain and Neural Sciences

Peripheral Neuropathy and Decreased Locomotion of a RAB40B Mutation in Human and Model Animals

Wonseok Son1†, Hui Su Jeong2†, Da Eun Nam1, Ah Jin Lee1, Soo Hyun Nam3, Ji Eun Lee2,4*, Byung-Ok Choi2,3,5* and Ki Wha Chung1*

1Department of Biological Sciences and BK21 Team for Field-oriented BioCore Human Resources Development, Kongju National University, Gongju 32588, 2Department of Health Sciences and Technology, Samsung Advanced Institute for Health Sciences & Technology, Sungkyunkwan University, Seoul 06351, 3Cell and Gene Therapy Institute, Samsung Medical Center, Seoul 06351, 4Samsung Biomedical Research Institute, Samsung Medical Center, Seoul 06351, 5Department of Neurology, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul 06351, Korea

Correspondence to: *To whom correspondence should be addressed.
Ji Eun Lee, TEL: 82-2-3410-6129, FAX: 82-2-3410-0534
e-mail: jieun.lee@skku.edu
Byung-Ok Choi, TEL: 82-2-3410-1296, FAX: 82-2-3410-0052
e-mail: bochoi77@hanmail.net
Ki Wha Chung, TEL: 82-41-850-8506, FAX: 82-41-850-0957
e-mail:kwchung@kongju.ac.kr
These authors contributed equally to this article.

Received: August 30, 2023; Revised: December 13, 2023; Accepted: December 15, 2023

This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

Rab40 proteins are an atypical subgroup of Rab GTPases containing a unique suppressor of the cytokine signaling (SOCS) domain that is recruited to assemble the CRL5 E3 ligase complex for proteolytic regulation in various biological processes. A nonsense mutation deleting the C-terminal SOCS box in the RAB40B gene was identified in a family with axonal peripheral neuropathy (Charcot-Marie-Tooth disease type 2), and pathogenicity of the mutation was assessed in model organisms of zebrafish and Drosophila. Compared to control fish, zebrafish larvae transformed by the human mutant hRAB40B-Y83X showed a defective swimming pattern of stalling with restricted localization and slower motility. We were consistently able to observe reduced labeling of synaptic markers along neuromuscular junctions of the transformed larvae. In addition to the neurodevelopmental phenotypes, compared to normal hRAB40B expression, we further examined ectopic expression of hRAB40B-Y83X in Drosophila to show a progressive decline of locomotion ability. Decreased ability of locomotion by ubiquitous expression of the human mutation was reproduced not with GAL4 drivers for neuron-specific expression but only when a pan-glial GAL4 driver was applied. Using the ectopic expression model of Drosophila, we identified a genetic interaction in which Cul5 down regulation exacerbated the defective motor performance, showing a consistent loss of SOCS box of the pathogenic RAB40B. Taken together, we could assess the possible gain-of-function of the human RAB40B mutation by comparing behavioral phenotypes in animal models; our results suggest that the mutant phenotypes may be associated with CRL5-mediated proteolytic regulation.

Graphical Abstract


Keywords: Peripheral neuropathy, RAB40B, SOCS box, Zebrafish, Drosophila