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Publication : C698R mutation in Lrsam1 gene impairs nerve regeneration in a CMT2P mouse model.

First Author  Moiseev D Year  2022
Journal  Sci Rep Volume  12
Issue  1 Pages  12160
PubMed ID  35842440 Mgi Jnum  J:326817
Mgi Id  MGI:7316072 Doi  10.1038/s41598-022-15902-3
Citation  Moiseev D, et al. (2022) C698R mutation in Lrsam1 gene impairs nerve regeneration in a CMT2P mouse model. Sci Rep 12(1):12160
abstractText  Missense mutation C694R in the RING domain of the LRSAM1 gene results in a dominantly inherited polyneuropathy, Charcot-Marie-Tooth disease type 2P (CMT2P). We have generated and characterized a Lrsam1(C698R) knock-in mouse model produced through CRISPR/Cas9 technology. Both heterozygous (Lrsam1(+/C698R)) and homozygous (Lrsam1(C698/C698R)) knock-in mice exhibited normal motor functions on behavioral tests as well as normal on nerve conduction studies. Axonal density and myelin thickness were not significantly different between mutants and wild-type mice by sciatic nerve morphometric analysis up to 17 months of age. In line with these normal findings, protein-protein interactions between mutant LRSAM1 and RNA-binding proteins (such as FUS and G3BP1) were still present in mouse cells, which differs from the disrupted interactions between these proteins in human CMT2P cells. However, after crush nerve injury, Lrsam1(+/C698R) mice had a mild, but statistically significant, reduced compound nerve action potential and conduction velocity during recovery. Therefore, C698R mutation results in a mild impaired nerve regeneration in mice. We speculate that repetitive nerve injuries may, at least partially, contribute to the slowly progressive axonal loss in CMT2P.
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