LoadingLoading
  • Browse By Category

  • Products
  • Services
  • Support
  • Corporate
  • Back
  • Products

  • Antibodies
  • Instruments
  • Research Kits
  • Proteins & Enzymes
  • Peptides
  • COVID-19 Assays
  • Back
  • Antibodies

  • Primary Antibodies
  • Secondary Antibodies
  • Tag Antibodies
  • Antibody Panel Packs
  • Back
  • Primary Antibodies

  • DNA Methylation Antibodies
  • Cell Structure & Function Antibodies
  • RNA Processing & Modification Antibodies
  • Chromatin & Transcription Antibodies
  • Other Primary Antibodies
  • Histone Modification Antibodies
  • Signal Transduction Antibodies
  • Metabolism Antibodies
  • Immunology & Inflammation Antibodies
  • Back
  • Cell Structure & Function Antibodies

  • DNA Damage & Repair Antibodies
  • Apoptosis & Cell Death Antibodies
  • Cell Cycle Antibodies
  • Cellular Structure Antibodies
  • Trafficking Antibodies
  • Back
  • Chromatin & Transcription Antibodies

  • DNA Replication & Transcription Antibodies
  • Chromatin Remodeling Antibodies
  • Cell Growth Antibodies
  • Development & Differentiation Antibodies
  • Back
  • Histone Modification Antibodies

  • Histone Methylation (Lysine) Antibodies
  • Histone Acetylation Antibodies
  • Histone Phosphorylation Antibodies
  • Ubiquitination & SUMOylation Antibodies
  • Histone Methylation (Arginine) Antibodies
  • Other Histone Methylation Antibodies
  • Other Histone Acetylation Antibodies
  • Histone Deacetylation Antibodies
  • Other Histone Antibodies
  • Back
  • Signal Transduction Antibodies

  • Cell Surface Receptor & Kinase Antibodies
  • Intracellular Kinase & Adaptor Protein Antibodies
  • Phosphatase Antibodies
  • Secreted Growth Factor Antibodies
  • Back
  • Metabolism Antibodies

  • Glucose Metabolism Antibodies
  • Lipid Metabolism Antibodies
  • Protein Metabolism Antibodies
  • Nucleotide Metabolism Antibodies
  • Back
  • Immunology & Inflammation Antibodies

  • Cell Marker & Receptor Antibodies
  • Cytokine Antibodies
  • Other Immunology Antibodies
  • Back
  • Antibody Panel Packs

  • Histone Modification
  • DNA Methylation
  • Back
  • Instruments

  • Sonication Devices
  • Magnets & Sample Mixers
  • Back
  • Research Kits

  • DNA Methylation
  • Chromatin & Transcription
  • Histone Methylation
  • Acetylation & Deacetylation
  • Gene Editing & Silencing
  • Sample Preparation
  • DNA Damage & Repair
  • Next Generation Sequencing
  • RNA Methylation
  • Other Histone Modifications
  • Back
  • DNA Methylation

  • DNA Bisulfite Conversion
  • DNA Methylation Quantification
  • DNA Methyltransferase & Demethylase Assays
  • Methylated DNA Immunoprecipitation
  • Methylated DNA Amplification
  • Back
  • Chromatin & Transcription

  • General Chromatin Immunoprecipitation
  • In Vitro Protein-DNA Interaction
  • Methyl-Histone Chromatin IP
  • Acetyl-Histone Chromatin IP
  • Methyl-DNA Binding Protein ChIP
  • Chromatin Analysis
  • Back
  • Histone Methylation

  • Histone Methyltransferase Assay
  • Histone Methylation Quantification
  • Histone Demethylase Assay
  • Back
  • Acetylation & Deacetylation

  • Histone Acetyltransferase (HAT) Assay
  • Histone Deacetylase (HDAC) Assay
  • Histone Acetylation Quantification
  • Back
  • Sample Preparation

  • DNA Preparation
  • Protein Preparation
  • Chromatin Preparation
  • RNA Preparation
  • Back
  • Other Histone Modifications

  • Sumoylation
  • Histone Phosphorylation Assay
  • Histone Citrullination
  • Back
  • Proteins & Enzymes

  • DNA Methylation/Demethylation Proteins
  • Methylated DNA Binding Proteins
  • Unmodified Histone Proteins
  • Chromatin Binding/Transcription Proteins
  • ADP Ribose Proteins
  • DNA Damage & Repair Proteins
  • Modified Histone Proteins
  • Back
  • DNA Methylation/Demethylation Proteins

  • DNA Demethylation Proteins
  • DNA Methylation Proteins
  • Back
  • Modified Histone Proteins

  • Histone Methylation Proteins
  • Histone Demethylation Proteins
  • Histone Acetylation Proteins
  • Histone Deacetylation Proteins
  • Histone Phosphorylation Proteins
  • Histone Sumoylation Proteins
  • Back
  • Peptides

  • Histone Methylation Peptides
  • Histone Acetylation Peptides
  • Histone Phosphorylation Peptides
  • Back
  • COVID-19 Assays

  • COVID-19 Kits
  • COVID-19 Antibodies
  • COVID-19 Proteins
  • Back
  • Services

  • DNA-based NGS Services
  • Chromatin-based NGS Services
  • qPCR-based Services
  • ELISA-based Services
  • Back
  • DNA-based NGS Services

  • Reduced Representation Bisulfite Sequencing (RRBS)
  • Whole Genome Bisulfite Sequencing (WGBS)
  • Targeted Bisulfite Sequencing
  • Back
  • Chromatin-based NGS Services

  • ChIP Sequencing (Histone Modifications)
  • Back
  • qPCR-based Services

  • Methylation-Specific qPCR (MSP)
  • Back
  • ELISA-based Services

  • Global DNA 5-mC Quantification
  • Global DNA 5-hmC Quantification
  • Global RNA 5-mC Quantification
  • Global RNA m6A Quantification
  • Histone Modification Quantification
  • Back
  • Support

  • Technical Support
  • Quality Assurance
  • Resources
  • Back
  • Technical Support

  • Submit Support Ticket
  • Back
  • Quality Assurance

  • Epigentek Gurantee
  • Risk-Free Testing: Pioneer Program
  • Product Review Program
  • Back
  • Resources

  • Epigenetics Newsletter
  • Intro to Epigenetics
  • What is Epigenetics?
  • Back
  • Corporate

  • Company Information
  • Procurement
  • Communication
  • Back
  • Company Information

  • About Epigentek
  • Press Release
  • Career Opportunities
  • Back
  • Procurement

  • Ordering Information
  • New Lab Startup Program
  • Distributors & Resellers
  • Back
  • Communication

  • Contact Us
  • Customer Feedback Survey
  • Events Calendar
Epigentek Home
Cart (0)
Datasheet
Track
Account
  • Products

    Research Kits

    • DNA Methylation
      • Global DNA Methylation Quantification
      • DNA Bisulfite Conversion
      • Methylated DNA Immunoprecipitation
      • DNMT & DNA Demethylase Assay
      • Methylated DNA Amplification
    • RNA Methylation
      • Global RNA Methylation Quantification
      • Transcriptome-Specific RNA Methylation
      • RNA Methylation Activity/Inhibition
    • Chromatin & Transcription
      • Chromatin Immunoprecipitation
      • CUT&RUN-Fast and more
      • Chromatin Accessibility
      • In Vitro Protein-DNA Interaction
    • Histone Modification
      • Histone Methylation Quantification
      • Histone Methytransferase (HMT) Assay
      • Histone Demethylase (KDM) Assay
      • Histone Acetylation Quantification
      • Histone Acetylase (HAT) Assay
      • Histone Deacetylase (HDAC) Assay
      • Histone Citrullination
      • Histone Phosphorylation
      • Histone SUMOylation
    • Protein-RNA Interaction
    • DNA/RNA Damage & Repair
      • Oxidative Cell Damage
      • Oxidative DNA/RNA Damage
    • Gene Editing & Silencing
    • Library Preparation
      • DNA-Related Library Preparation
      • RNA-Related Library Preparation
      • Chromatin-Related Library Preparation
    • Sample Preparation
      • DNA Extraction
      • RNA Extraction
      • Chromatin Extraction
      • Histone Extraction
      • Nuclear Extraction
      • Whole Cell Extraction

    Antibodies

    • DNA Modification & Regulators
      • DNA Methylation
      • DNA Regulators
    • Histone Modification
      • Histone Methylation (Lysine)
      • Histone Methylation (Arginine)
      • Other Histone Methylation
      • Histone Acetylation
      • Histone Deacetylation
      • Other Histone Acetylation
      • Histone Phosphorylation
      • Ubiquitination & SUMOylation
      • Other Histone Antibodies
    • RNA Modification & Processing
      • RNA Methylation
      • RNA Processing
    • Chromatin & Transcription
      • Chromatin Remodeling
      • DNA Replication & Transcription
      • Cell Growth
      • Development & Differentiation
    • Cell Structure & Function
      • Cell Cycle
      • DNA Damage & Repair
      • Apoptosis & Cell Death
      • Cellular Structure
      • Trafficking
    • Signal Transduction
      • Cell Surface Receptor & Kinase
      • Intracellular Kinase & Adaptor Protein
      • Phosphatase
      • Secreted Growth Factor
    • Metabolism
      • Glucose Metabolism
      • Lipid Metabolism
      • Protein Metabolism
      • Nucleotide Metabolism
    • Immunology & Inflammation
      • Cell Marker & Receptor
      • Cytokine
      • Other Immunology Antibodies
    • Other Primary Antibodies

    • Secondary Antibodies
    • Tag Antibodies
    • Antibody Panel Packs
      • Histone Modification Panel
      • DNA Methylation Panel

    Proteins & Enzymes

    • DNA Methylation
      • DNA Methylation
      • DNA Demethylation
    • Modified Histones
      • Histone Methylation
      • Histone Demethylation
      • Histone Acetylation
      • Histone Deacetylation
      • Histone Phosphorylation
      • Histone SUMOylation
    • Unmodified Histones
    • Methylated DNA Binding
    • ADP Ribose
    • Chromatin Binding/Transcription
    • DNA Damage & Repair

    Peptides

    • Histone Methylation
    • Histone Acetylation/Deacetylation
    • Histone Phosphorylation

    Instruments

    • Sonication Devices
    • Magnets & Sample Mixers

    COVID-19 Assays

    • COVID-19 Kits
    • COVID-19 Antibodies
    • COVID-19 Proteins
  • Services

    DNA-based NGS Services

    • Reduced Representation Bisulfite Sequencing (RRBS)
    • Whole Genome Bisulfite Sequencing (WGBS)

    Chromatin-based NGS Services

    • ChIP-Seq

    ELISA-based Services

    • Global DNA 5-mC Quantification
    • Global DNA 5-hmC Quantification
    • Global RNA m6A Quantification
    • Global RNA 5-mC Quantification
    • Histone Modification Quantification
    RRBS Services
  • Support

    Technical Support

    • Submit Support Ticket
    • Download Datasheet

    Resource Bulletins

    • DNA Methylation
    • RNA Methylation
    • Chromatin Remodeling
    • Histone Modifications
    • Gene Editing
    • Miscellaneous
    • Weekly Research Showcase
  • Ordering

    Procurement

    • Ordering Info & Return Policy
    • Distributors & Resellers
    • Request a Quote
    • Application Guarantee

    Promotions

    • Current Promotional Offers
    • New Lab Startup Program
    • Risk-Free Testing: Pioneer Program
    • Rewards Program
    • Product Review Program

    Company Information

    • About Us
    • Corporate Sustainability
    • Press Releases
    • Events Calendar
    • Career Opportunities
    • Contact Us
 
EpiGentek Guarantee
   Home  »  Epigenetic Resources  »  RNA Methylation Regulates Muscle Atrophy After Nerve Damage 
  Quick Order      Quote Lookup

RNA Methylation Regulates Muscle Atrophy After Nerve Damage


Peripheral nerve injuries (PNIs) can have a devastating effect on the communication between brain and muscle, triggering a cascade of detrimental consequences. One of the main consequences is muscle atrophy, which is the process of muscle mass depletion and functional decline. This atrophy not only compromises function but also poses a significant clinical challenge, with limited therapeutic options currently available.

Previous studies have shown that the imbalance between protein synthesis and degradation, particularly through pathways like the ubiquitin-proteasome system, is crucial in the development of atrophy. Additionally, various RNA changes, such as non-coding non-coding RNA expression and alternative splicing, have been shown to play a role in this process.

rna methylation ELISA category learn more

Emerging research has highlighted a new regulator of muscle health: m6A methylation. This reversible RNA modification, which controls gene expression, could play a significant role in combating muscle loss caused by PNIs.

In a study published in the Journal of Translational Medicine, researchers explored the changes, functions, and molecular mechanisms of m6A RNA methylation during muscle atrophy caused by denervation (nerve loss). The findings of this study suggest that m6A methylation could hold significant potential in preventing muscle loss caused by nerve damage.

The research team conducted an in-depth analysis of the muscle-wasting process triggered by PNI. A pivotal element of their investigation was assessing the levels of m6A methylation in the affected muscles. To accomplish this, they utilized the highly sensitive and specific EpiQuik m6A RNA Methylation Quantification Kit. This kit enabled them to quantify the downregulation of m6A methylation that was observed in the denervated muscles accurately. The precise measurement provided a solid foundation for further investigation into the contributing role of m6A in muscle atrophy.

figure m6A level: align=
Figure from Sun et al. (J Transl Med, Nov 2023, 21(1):845): The EpiQuik m6A RNA Methylation Quantification Kit (Cat.# P-9005) detected a 70% decrease in m6A at 72 h post-denervation, indicating mRNA demethylation dominance in late-stage muscle atrophy.

To elucidate the functional role of m6A, the team conducted targeted experiments manipulating METTL3, the methyltransferase responsible for m6A deposition. The results showed that silencing METTL3 exacerbated muscle atrophy, confirming its crucial role in maintaining muscle health after PNIs. Conversely, overexpression of METTL3 significantly mitigated muscle loss, solidifying the causal relationship between m6A levels and muscle mass.

The study also revealed an intriguing neuro-muscular cross-talk facilitated by m6A methylation. In instances of nerve inactivity or denervation, there was a decrease in the release of BDNF (brain-derived neurotrophic factor), a potent initiator of m6A methylation in muscle cells. This pronounced downregulation exposed a novel mechanism contributing to the observed muscle wasting.

You May Also Want to Read:

  • Therapeutic Potential of m6A RNA Methylation
  • Exploring m6A RNA Methylation: Writers, Erasers, Readers 
  • Benchtop Tip/Guide for RNA Methylation

The findings from this study unveil potential strategies for innovative treatments to address muscle atrophy. By targeting METTL3 through pharmacological or gene therapy interventions, there is the potential to directly restore m6A levels, effectively preventing muscle loss in the aftermath of PNIs. Additionally, the modulation of BDNF signaling, achieved through restoring neuronal activity or directly stimulating BDNF production, presents an indirect means to enhance m6A methylation, providing neuroprotective benefits and concurrently improving overall muscle health.

Overall, this study reveals a promising target for addressing muscle atrophy following nerve damage through the potential involvement of m6A. While the detailed mechanisms of m6A in this context demand further investigation, the results hint at its therapeutic prospects. Further research is necessary to formulate effective treatments and enhance our understanding of m6A's role in this intricate process.

Reference:

Sun J et. al. (November 2023). Altered m6A RNA methylation governs denervation-induced muscle atrophy by regulating ubiquitin proteasome pathway. J Transl Med. 21(1):845.


Epigenetic Resources
  • DNA Damage & Repair
  • DNA Methylation»
  • RNA Methylation»
  • Chromatin Remodeling»
  • Histone Modifications»
  • Gene Editing
  • Miscellaneous
  • Weekly Research Showcase

Suggested Reads:

Enhancer Activation and H3K27ac in Cell-State Plasticity
m6A RNA Methylation in Cancer Immunity and Therapeutic Resistance
cfDNA Methylation in Liquid Biopsy Research: Where Global 5-mC, 5-hmC, Enrichment, and RRBS Readouts Fit
Understanding Open Chromatin Bias in CUT&RUN and CUT&Tag
Company
About Epigentek
Press Releases
Events Calendar
Corporate Sustainability
Career Opportunities
What Is Epigenetics?
Contact Us
Ordering
Ordering Info & Return Policy
Distributors & Resellers

Support
Technical Support
Download Datasheets
Resource Bulletins
Promotions & Offers
Current Promotions
New Lab Startup Program
Risk-Free Testing: Pioneer Program
Rewards Program
Product Reviews
Application Guarantee
Sign Up For Exclusive Offers
Request a Quote
Stay Informed




Terms & Conditions | Privacy Policy | Site Map
Copyright © EpigenTek Group Inc. All rights reserved.
  • Stay Informed:
Terms & Conditions | Privacy Policy Copyright © EpiGentek