Neuromuscular junction-specific genes screening by deep RNA-seq analysis
Abstract Background Neuromuscular junctions (NMJs) are chemical synapses formed between motor neurons and skeletal muscle fibers and are essential for controlling muscle contraction. NMJ dysfunction causes motor disorders, muscle wasting, and even breathing difficulties. Increasing evidence suggests...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
BMC
2021-05-01
|
Series: | Cell & Bioscience |
Subjects: | |
Online Access: | https://doi.org/10.1186/s13578-021-00590-9 |
id |
doaj-af947d2888074e4ca3ac4cccc8f62228 |
---|---|
record_format |
Article |
spelling |
doaj-af947d2888074e4ca3ac4cccc8f622282021-05-02T11:44:28ZengBMCCell & Bioscience2045-37012021-05-0111111510.1186/s13578-021-00590-9Neuromuscular junction-specific genes screening by deep RNA-seq analysisTiankun Hui0Hongyang Jing1Xinsheng Lai2School of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversitySchool of Life Science, Nanchang UniversityAbstract Background Neuromuscular junctions (NMJs) are chemical synapses formed between motor neurons and skeletal muscle fibers and are essential for controlling muscle contraction. NMJ dysfunction causes motor disorders, muscle wasting, and even breathing difficulties. Increasing evidence suggests that many NMJ disorders are closely related to alterations in specific gene products that are highly concentrated in the synaptic region of the muscle. However, many of these proteins are still undiscovered. Thus, screening for NMJ-specific proteins is essential for studying NMJ and the pathogenesis of NMJ diseases. Results In this study, synaptic regions (SRs) and nonsynaptic regions (NSRs) of diaphragm samples from newborn (P0) and adult (3-month-old) mice were used for RNA-seq. A total of 92 and 182 genes were identified as differentially expressed between the SR and NSR in newborn and adult mice, respectively. Meanwhile, a total of 1563 genes were identified as differentially expressed between the newborn SR and adult SR. Gene Ontology (GO) enrichment analyses, Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis and gene set enrichment analysis (GSEA) of the DEGs were performed. Protein–protein interaction (PPI) networks were constructed using STRING and Cytoscape. Further analysis identified some novel proteins and pathways that may be important for NMJ development, maintenance and maturation. Specifically, Sv2b, Ptgir, Gabrb3, P2rx3, Dlgap1 and Rims1 may play roles in NMJ development. Hcn1 may localize to the muscle membrane to regulate NMJ maintenance. Trim63, Fbxo32 and several Asb family proteins may regulate muscle developmental-related processes. Conclusion Here, we present a complete dataset describing the spatiotemporal transcriptome changes in synaptic genes and important synaptic pathways. The neuronal projection-related pathway, ion channel activity and neuroactive ligand-receptor interaction pathway are important for NMJ development. The myelination and voltage-gated ion channel activity pathway may be important for NMJ maintenance. These data will facilitate the understanding of the molecular mechanisms underlying the development and maintenance of NMJ and the pathogenesis of NMJ disorders.https://doi.org/10.1186/s13578-021-00590-9Neuromuscular junctionRNA-seqDifferentially expressed genesNMJ diseases |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tiankun Hui Hongyang Jing Xinsheng Lai |
spellingShingle |
Tiankun Hui Hongyang Jing Xinsheng Lai Neuromuscular junction-specific genes screening by deep RNA-seq analysis Cell & Bioscience Neuromuscular junction RNA-seq Differentially expressed genes NMJ diseases |
author_facet |
Tiankun Hui Hongyang Jing Xinsheng Lai |
author_sort |
Tiankun Hui |
title |
Neuromuscular junction-specific genes screening by deep RNA-seq analysis |
title_short |
Neuromuscular junction-specific genes screening by deep RNA-seq analysis |
title_full |
Neuromuscular junction-specific genes screening by deep RNA-seq analysis |
title_fullStr |
Neuromuscular junction-specific genes screening by deep RNA-seq analysis |
title_full_unstemmed |
Neuromuscular junction-specific genes screening by deep RNA-seq analysis |
title_sort |
neuromuscular junction-specific genes screening by deep rna-seq analysis |
publisher |
BMC |
series |
Cell & Bioscience |
issn |
2045-3701 |
publishDate |
2021-05-01 |
description |
Abstract Background Neuromuscular junctions (NMJs) are chemical synapses formed between motor neurons and skeletal muscle fibers and are essential for controlling muscle contraction. NMJ dysfunction causes motor disorders, muscle wasting, and even breathing difficulties. Increasing evidence suggests that many NMJ disorders are closely related to alterations in specific gene products that are highly concentrated in the synaptic region of the muscle. However, many of these proteins are still undiscovered. Thus, screening for NMJ-specific proteins is essential for studying NMJ and the pathogenesis of NMJ diseases. Results In this study, synaptic regions (SRs) and nonsynaptic regions (NSRs) of diaphragm samples from newborn (P0) and adult (3-month-old) mice were used for RNA-seq. A total of 92 and 182 genes were identified as differentially expressed between the SR and NSR in newborn and adult mice, respectively. Meanwhile, a total of 1563 genes were identified as differentially expressed between the newborn SR and adult SR. Gene Ontology (GO) enrichment analyses, Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis and gene set enrichment analysis (GSEA) of the DEGs were performed. Protein–protein interaction (PPI) networks were constructed using STRING and Cytoscape. Further analysis identified some novel proteins and pathways that may be important for NMJ development, maintenance and maturation. Specifically, Sv2b, Ptgir, Gabrb3, P2rx3, Dlgap1 and Rims1 may play roles in NMJ development. Hcn1 may localize to the muscle membrane to regulate NMJ maintenance. Trim63, Fbxo32 and several Asb family proteins may regulate muscle developmental-related processes. Conclusion Here, we present a complete dataset describing the spatiotemporal transcriptome changes in synaptic genes and important synaptic pathways. The neuronal projection-related pathway, ion channel activity and neuroactive ligand-receptor interaction pathway are important for NMJ development. The myelination and voltage-gated ion channel activity pathway may be important for NMJ maintenance. These data will facilitate the understanding of the molecular mechanisms underlying the development and maintenance of NMJ and the pathogenesis of NMJ disorders. |
topic |
Neuromuscular junction RNA-seq Differentially expressed genes NMJ diseases |
url |
https://doi.org/10.1186/s13578-021-00590-9 |
work_keys_str_mv |
AT tiankunhui neuromuscularjunctionspecificgenesscreeningbydeeprnaseqanalysis AT hongyangjing neuromuscularjunctionspecificgenesscreeningbydeeprnaseqanalysis AT xinshenglai neuromuscularjunctionspecificgenesscreeningbydeeprnaseqanalysis |
_version_ |
1721491762570067968 |