| Literature DB >> 31803009 |
Lindsay Poppe1,2, Silke Smolders1,2, Laura Rué1,2, Mieke Timmers1,2, Annette Lenaerts1,2, Annet Storm1,2, Lies Schoonaert1,2, Antina de Boer1,2, Philip Van Damme1,2,3, Ludo Van Den Bosch1,2, Wim Robberecht1,3, Robin Lemmens1,2,3.
Abstract
EphA4 is a receptor of the Eph-ephrin system, which plays an important role in axon guidance during development. Previously, we identified EphA4 as a genetic modifier of amyotrophic lateral sclerosis (ALS) in both zebrafish and rodent models, via modulation of the intrinsic vulnerability, and re-sprouting capacity of motor neurons. Moreover, loss of EphA4 rescued the motor axon phenotype in a zebrafish model of spinal muscular atrophy (SMA). Similar to ALS, SMA is a neurodegenerative disorder affecting spinal motor neurons resulting in neuromuscular junction (NMJ) denervation, muscle atrophy and paralysis. In this study, we investigated the disease modifying potential of reduced EphA4 protein levels in the SMNΔ7 mouse model for severe SMA. Reduction of EphA4 did not improve motor function, survival, motor neuron survival or NMJ innervation. Our data suggest that either lowering EphA4 has limited therapeutic potential in SMA or that the clinical severity hampers the potential beneficial role of EphA4 reduction in this mouse model for SMA.Entities:
Keywords: EphA4; motor neuron; neuromuscular junction; spinal muscular atrophy; sprouting
Year: 2019 PMID: 31803009 PMCID: PMC6877733 DOI: 10.3389/fnins.2019.01233
Source DB: PubMed Journal: Front Neurosci ISSN: 1662-453X Impact factor: 4.677
Primer pairs used for genotyping of SMNΔ7 mice.
| 1 | 5′-GTGTCTGGGCTGTAGG CATTG-3′ | 5′-GGCTGTGCCTTTTG GCTTATCTG-3′ |
| 2 | 5′-GCCTGCGATGTCGGTTT CCGCGAGG-3′ | 5′-CCAGCGCGGAT CGGTCAGACG-3′ |
| 3 | 5′-CTGACCTACCAGGGA TGAGG-3′ | 5′-GGTCTGTTCTACA GCCACAGC-3′ |
| 4 | 5′-CTGACCTACCAGGGA TGAGG-3′ | 5′-CCCAGG TGGTTTAT AGACTCAGA-3′ |
| 5 | 5′-TGCTGGCTGCCTC CATTT-3′ | 5′-GCATCATCAAGAGAATC TGGACAT-3′ |
FIGURE 1EphA4 levels are reduced in the spinal cord of SMNΔ7 mice, without affecting SMN protein levels. Representative images (A) and quantifications (B,C) of a Western blot analysis of EphA4 and SMN levels in spinal cord lysates of Ctrl (smn+/+ and smn+/–) and SMA (smn–/–) pups are shown. Beta-actin protein levels were used as a loading control (two-way ANOVA with Sidak’s multiple comparison test, n = 4–5 mice/group). ∗p ≤ 0.05 and ∗∗p ≤ 0.01. Ctrl, control.
FIGURE 2Decrease of EphA4 does not alter motor function and survival in SMNΔ7 mice. Motor performance as assessed in the righting reflex test (A) and HLS test (B–E), and body weight (F) were monitored during disease progression in SMA-EphA4+/+ (n = 11) and SMA-EphA4+/– (n = 10) pups. Ctrl-EphA4+/+ (n = 8) and Ctrl-EphA4+/– (n = 9) pups were included as controls. Two-way repeated measures ANOVA with Sidak’s multiple comparison test was used to compare Ctrl-EphA4+/+ versus Ctrl-EphA4+/– pups and SMA-EphA4+/+ versus SMA-EphA4+/– pups. Survival analysis (G) in SMA-EphA4+/+ (n = 13) and SMA-EphA4+/– (n = 17) pups (Log-rank Mantel–Cox test). ∗p ≤ 0.05. Ctrl, control; HLST, hind-limb suspension test.
FIGURE 3Decrease of EphA4 does not improve neuromuscular junction innervation in SMNΔ7 mice. Innervation status of NMJs in affected muscles was determined in pups at PND11 via immunohistochemical labeling with antibodies specific for NF-L and synaptophysin. Alpha-bungarotoxin was used to label the motor endplates. Representative images (A) and quantifications (B) of fully innervated, partially innervated (arrowhead) and denervated (arrow) NMJs in the splenius and longissimus capitis muscles of Ctrl-EphA4+/+ (n = 6), Ctrl-EphA4+/– (n = 4), SMA-EphA4+/+ (n = 9–10) and SMA-EphA4+/– (n = 6–7) pups are shown (two-way ANOVA with Sidak’s multiple comparison test). (C) Quantification of a quantitative PCR analysis of Chat mRNA expression levels in the lumbar spinal cord of Ctrl-EphA4+/+ (n = 5), Ctrl-EphA4+/– (n = 4), SMA-EphA4+/+ (n = 8) and SMA-EphA4+/– (n = 7) pups at PND11 (two-way ANOVA with Sidak’s multiple comparison test). Expression data was normalized to Gapdh and Polr2a. ∗∗p ≤ 0.01. Scale bar = 50 μm. NF-L, neurofilament-L; Ctrl, control.