Synapse-specific Lrp4 mRNA enrichment requires Lrp4/MuSK signaling, muscle activity and Wnt non-canonical pathway

Abstract Background The neuromuscular junction (NMJ) is a peripheral synapse critical to muscle contraction. Like acetylcholine receptors (AChRs), many essential proteins of NMJ are extremely concentrated at the postjunctional membrane. However, the mechanisms of synapse-specific concentration are n...

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Main Authors: Hongyang Jing, Peng Chen, Tiankun Hui, Zheng Yu, Jin Zhou, Erkang Fei, Shunqi Wang, Dongyan Ren, Xinsheng Lai, Baoming Li
Format: Article
Language:English
Published: BMC 2021-06-01
Series:Cell & Bioscience
Subjects:
Online Access:https://doi.org/10.1186/s13578-021-00619-z
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spelling doaj-1d20a9b1958e4b8b86db4b991d9b93ee2021-06-06T11:47:49ZengBMCCell & Bioscience2045-37012021-06-0111111510.1186/s13578-021-00619-zSynapse-specific Lrp4 mRNA enrichment requires Lrp4/MuSK signaling, muscle activity and Wnt non-canonical pathwayHongyang Jing0Peng Chen1Tiankun Hui2Zheng Yu3Jin Zhou4Erkang Fei5Shunqi Wang6Dongyan Ren7Xinsheng Lai8Baoming Li9School of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversityAbstract Background The neuromuscular junction (NMJ) is a peripheral synapse critical to muscle contraction. Like acetylcholine receptors (AChRs), many essential proteins of NMJ are extremely concentrated at the postjunctional membrane. However, the mechanisms of synapse-specific concentration are not well understood; furthermore, it is unclear whether signaling molecules critical to NMJ formation and maintenance are also locally transcribed. Results We studied the β-gal activity encoded by a lacZ cassette driven by the promoter of the Lrp4 gene. As reported for Lrp4 mRNA, β-gal was in the central region in embryonic muscles and at the NMJ after its formation. However, β-gal was no longer in the central areas of muscle fibers in Lrp4 or MuSK mutant mice, indicating a requirement of Lrp4/MuSK signaling. This phenotype could be rescued by transgenic expression of LRP4 with a transmembrane domain but not soluble ECD in Lrp4 mutant mice. β-gal and AChR clusters were distributed in a broader region in lacZ/ECD than that of heterozygous lacZ/+ mice, indicating an important role of the transmembrane domain in Lrp4 signaling. Synaptic β-gal activity became diffused after denervation or treatment with µ-conotoxin, despite its mRNA was increased, indicating synaptic Lrp4 mRNA enrichment requires muscle activity. β-gal was also diffused in aged mice but became re-concentrated after muscle stimulation. Finally, Lrp4 mRNA was increased in C2C12 myotubes by Wnt ligands in a manner that could be inhibited by RKI-1447, an inhibitor of ROCK in Wnt non-canonical signaling. Injecting RKI-1447 into muscles of adult mice diminished Lrp4 synaptic expression. Conclusions This study demonstrates that synapse-specific enrichment of Lrp4 mRNA requires a coordinated interaction between Lrp4/MuSK signaling, muscle activity, and Wnt non-canonical signaling. Thus, the study provides a new mechanism for Lrp4 mRNA enrichment. It also provides a potential target for the treatment of NMJ aging and other NMJ-related diseases.https://doi.org/10.1186/s13578-021-00619-zLrp4Neuromuscular junctionβ-galMuscle activityWnt non-canonical signaling
collection DOAJ
language English
format Article
sources DOAJ
author Hongyang Jing
Peng Chen
Tiankun Hui
Zheng Yu
Jin Zhou
Erkang Fei
Shunqi Wang
Dongyan Ren
Xinsheng Lai
Baoming Li
spellingShingle Hongyang Jing
Peng Chen
Tiankun Hui
Zheng Yu
Jin Zhou
Erkang Fei
Shunqi Wang
Dongyan Ren
Xinsheng Lai
Baoming Li
Synapse-specific Lrp4 mRNA enrichment requires Lrp4/MuSK signaling, muscle activity and Wnt non-canonical pathway
Cell & Bioscience
Lrp4
Neuromuscular junction
β-gal
Muscle activity
Wnt non-canonical signaling
author_facet Hongyang Jing
Peng Chen
Tiankun Hui
Zheng Yu
Jin Zhou
Erkang Fei
Shunqi Wang
Dongyan Ren
Xinsheng Lai
Baoming Li
author_sort Hongyang Jing
title Synapse-specific Lrp4 mRNA enrichment requires Lrp4/MuSK signaling, muscle activity and Wnt non-canonical pathway
title_short Synapse-specific Lrp4 mRNA enrichment requires Lrp4/MuSK signaling, muscle activity and Wnt non-canonical pathway
title_full Synapse-specific Lrp4 mRNA enrichment requires Lrp4/MuSK signaling, muscle activity and Wnt non-canonical pathway
title_fullStr Synapse-specific Lrp4 mRNA enrichment requires Lrp4/MuSK signaling, muscle activity and Wnt non-canonical pathway
title_full_unstemmed Synapse-specific Lrp4 mRNA enrichment requires Lrp4/MuSK signaling, muscle activity and Wnt non-canonical pathway
title_sort synapse-specific lrp4 mrna enrichment requires lrp4/musk signaling, muscle activity and wnt non-canonical pathway
publisher BMC
series Cell & Bioscience
issn 2045-3701
publishDate 2021-06-01
description Abstract Background The neuromuscular junction (NMJ) is a peripheral synapse critical to muscle contraction. Like acetylcholine receptors (AChRs), many essential proteins of NMJ are extremely concentrated at the postjunctional membrane. However, the mechanisms of synapse-specific concentration are not well understood; furthermore, it is unclear whether signaling molecules critical to NMJ formation and maintenance are also locally transcribed. Results We studied the β-gal activity encoded by a lacZ cassette driven by the promoter of the Lrp4 gene. As reported for Lrp4 mRNA, β-gal was in the central region in embryonic muscles and at the NMJ after its formation. However, β-gal was no longer in the central areas of muscle fibers in Lrp4 or MuSK mutant mice, indicating a requirement of Lrp4/MuSK signaling. This phenotype could be rescued by transgenic expression of LRP4 with a transmembrane domain but not soluble ECD in Lrp4 mutant mice. β-gal and AChR clusters were distributed in a broader region in lacZ/ECD than that of heterozygous lacZ/+ mice, indicating an important role of the transmembrane domain in Lrp4 signaling. Synaptic β-gal activity became diffused after denervation or treatment with µ-conotoxin, despite its mRNA was increased, indicating synaptic Lrp4 mRNA enrichment requires muscle activity. β-gal was also diffused in aged mice but became re-concentrated after muscle stimulation. Finally, Lrp4 mRNA was increased in C2C12 myotubes by Wnt ligands in a manner that could be inhibited by RKI-1447, an inhibitor of ROCK in Wnt non-canonical signaling. Injecting RKI-1447 into muscles of adult mice diminished Lrp4 synaptic expression. Conclusions This study demonstrates that synapse-specific enrichment of Lrp4 mRNA requires a coordinated interaction between Lrp4/MuSK signaling, muscle activity, and Wnt non-canonical signaling. Thus, the study provides a new mechanism for Lrp4 mRNA enrichment. It also provides a potential target for the treatment of NMJ aging and other NMJ-related diseases.
topic Lrp4
Neuromuscular junction
β-gal
Muscle activity
Wnt non-canonical signaling
url https://doi.org/10.1186/s13578-021-00619-z
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