Close Menu

    Subscribe to Updates

    Get the latest creative news from FooBar about art, design and business.

    What's Hot

    Healthcare Delivery Challenges and the Promise of Digital Health Innovations

    August 17, 2026

    Why 2025 Dietary Guidelines Miss the Mark on Metabolic Health

    August 16, 2026

    The Telemedicine Challenge: Why Founders and Engineers Need 2026 Strategies Now

    August 15, 2026
    Facebook X (Twitter) Instagram
    Facebook X (Twitter) Instagram
    Health Magazine
    • Home
    • Environmental Health
    • Health Technology
    • Medical Research
    • Mental Health
    • Nutrition Science
    • Pharma
    • Public Health
    • Discover
      • Daily Health Tips
      • Financial Health & Stability
      • Holistic Health & Wellness
      • Mental Health
      • Nutrition & Dietary Trends
      • Professional & Personal Growth
    • Our Mission
    Health Magazine
    Home » News » GADD45B promotes apoptosis in intestinal injury through DNA demethylation
    Discover

    GADD45B promotes apoptosis in intestinal injury through DNA demethylation

    healthadminBy healthadminMay 5, 2026No Comments3 Mins Read
    GADD45B promotes apoptosis in intestinal injury through DNA demethylation
    Share
    Facebook Twitter Reddit Telegram Pinterest Email



    Intestinal ischemia/reperfusion (I/R) injury is a common pathophysiological phenomenon widely present in various primary intestinal diseases and systemic critical diseases, which can cause multiorgan dysfunction and failure, and is associated with high morbidity and mortality. Therefore, it is of paramount importance to investigate the mechanisms underlying intestinal inflammation/inflammatory responses and identify potential therapeutic targets.

    Recently, the research team of Professor Tian Xiaofeng of Dalian Medical University published a research paper dated April 9, 2026. Chinese medical journal Title: “Growth arrest and DNA damage-induced β (Gad 45B) MST1/Hippo promotes apoptosis in intestinal ischemia/reperfusion via DNA demethylation. ” The study reports: Gad 45B interact with Tet 1 MST1 promotes DNA demethylation and thereby induces MST1 expressed and subsequently activates the Hippo pathway and exacerbates apoptosis after intestinal I/R.

    GADD45B is an important stress sensor that mediates various cellular responses and regulates multiple biological processes such as cell survival, DNA demethylation and repair, apoptosis, inflammation, and cell cycle arrest. In previous research, Gad 45B is among the top 20 differentially expressed genes after intestinal I/R injury in humans. Furthermore, previous RNA-seq results showed that; Gad 45B Expression is significantly upregulated in mouse models of intestinal I/R. Therefore, the role of Gad 45B Further investigation is needed in intestinal I/R.

    What we found in this research is that Gad 45B Expression was significantly increased in H/R-induced Caco-2 cells and mouse intestinal I/R model. specific knockdown Gad 45B alive and in vitro Cell apoptosis was reduced and intestinal and distant organ damage was reduced. in vitro overexpression of Gad 45B H/R-induced intestinal damage and cell apoptosis in Caco-2 cells is exacerbated. These findings suggest that Gad 45B is an important target contributing to cell apoptosis following intestinal injury and intestinal inflammation. Transcriptome KEGG enrichment analysis subsequently identified the Hippo pathway as a downstream target pathway. Gad 45B We conducted studies in intestinal I/R injury and identified its downstream target protein, mammalian sterile 20-like kinase 1 (MST1). If we examine the mechanism in more detail, Gad 45B Regulates the Hippo pathway, which the authors knocked down and overexpressed Gad 45B In Caco-2 cells. Using methylation-specific PCR (MSP) and chromatin immunoprecipitation (ChIP) assays, they found that: Gad 45B provoke MST1 Expression by DNA demethylation. TET enzymes are a type of general demethylase that reduce the level of DNA methylation at gene promoters, thereby stimulating the expression of specific genes. In previous research, Gad 45B It can bind to TET1 and directly mediate region-specific demethylation. To further investigate the molecular basis Gad 45BThe authors first confirmed that MST1 mediated DNA demethylation. Tet 1 Expression was significantly upregulated after intestinal I/R, consistent with the observed trend of GADD45B. Subsequently, ChIP, Co-IP, and MSP assays further confirmed the following: Gad 45B MST1 promotes DNA demethylation through physical interaction with MST1. Tet 1.

    In summary, this study demonstrates a proapoptotic role. Gad 45B We investigate its downstream pathways and targets in intestinal I/R and further confirm the important role of epigenetics in intestinal I/R. Mechanically, Gad 45B It interacts with TET1 to promote demethylation of MST1 DNA, thereby activating the Hippo pathway and aggravating intestinal I/R injury. These findings suggest that Gad 45B is an important regulator in intestinal I/R injury, and targeting the GADD45B/TET1/MST1 axis may be a viable therapeutic strategy.

    sauce:

    Dalian Medical University

    Reference magazines:

    Yang, F. Others. (2026). GADD45B promotes apoptosis in intestinal ischemia/reperfusion via DNA demethylation of MST1/Hippo. Chinese medical journal. DOI: 10.1097/CM9.0000000000004050. https://journals.lww.com/cmj/fulltext/9900/gadd45b_promotes_apoptosis_in_intestinal.2014.aspx



    Source link

    Visited 9 times, 1 visit(s) today
    Share. Facebook Twitter Pinterest LinkedIn Telegram Reddit Email
    Previous ArticleMyqorzo provides cell dynamics scores for key cardiomyopathy tests
    Next Article Machine learning study identifies different subtypes of Parkinson’s disease
    healthadmin

    Related Posts

    Texas A&M researchers build AI tool for tuberculosis drug discovery

    July 30, 2026

    New ultrasound technology breaks blood-brain barrier to treat gliomas

    July 30, 2026

    Omalizumab wins multi-allergen oral immunotherapy in multi-food allergy trial

    July 30, 2026

    MAGFLO™ NGS beads: cost-effective nucleic acid purification

    July 30, 2026

    Qureight completes $20 million Series B funding

    July 30, 2026

    Cigarette smoke extract stimulates airway cells and increases nanoplastic damage

    July 30, 2026
    Add A Comment

    Comments are closed.

    Categories

    • Daily Health Tips
    • Discover
    • Environmental Health
    • Exercise & Fitness
    • Featured
    • Featured Videos
    • Financial Health & Stability
    • Fitness
    • Fitness Updates
    • Health
    • Health Technology
    • Healthy Aging
    • Healthy Living
    • Holistic Healing
    • Holistic Health & Wellness
    • Medical Research
    • Medical Research & Insights
    • Mental Health
    • Mental Wellness
    • Natural Remedies
    • New Workouts
    • Nutrition
    • Nutrition & Dietary Trends
    • Nutrition & Superfoods
    • Nutrition Science
    • Pharma
    • Preventive Healthcare
    • Professional & Personal Growth
    • Public Health
    • Public Health & Awareness
    • Selected
    • Sleep & Recovery
    • Top Programs
    • Weight Management
    • Workouts
    Popular Posts
    • 1773313737_bacteria_-_Sebastian_Kaulitzki_46826fb7971649bfaca04a9b4cef3309-620x480.jpgHow Sino Biological ProPure™ redefines ultra-low… March 12, 2026
    • pexels-david-bartus-442116The food industry needs to act now to cut greenhouse… January 2, 2022
    • 1773729862_TagImage-3347-458389964760995353448-620x480.jpgDespite safety concerns, parents underestimate the… March 17, 2026
    • 1774403998_image_28620e4b6b0047f7ab9154b41d739db1-620x480.jpgGait pattern helps distinguish between Lewy body… March 24, 2026
    • 1773209206_futuristic_techno_design_on_background_of_supercomputer_data_center_-_Image_-_Timofeev_Vladimir_M1_4.jpegMulti-agent AI systems outperform single models… March 11, 2026
    • Leukemia-620x480.jpgBiomimetic platform powers CAR T therapy for… March 9, 2026

    Demo
    Stay In Touch
    • Facebook
    • Twitter
    • Pinterest
    • Instagram
    • YouTube
    • Vimeo
    Don't Miss

    Healthcare Delivery Challenges and the Promise of Digital Health Innovations

    By healthadminAugust 17, 2026

    Explore how telemedicine, wearables, and AI diagnostics are transforming healthcare delivery amid challenges like fragmented care and data silos.

    Why 2025 Dietary Guidelines Miss the Mark on Metabolic Health

    August 16, 2026

    The Telemedicine Challenge: Why Founders and Engineers Need 2026 Strategies Now

    August 15, 2026

    Overcoming Information Overload in 2026 Medical Research

    August 14, 2026

    Subscribe to Updates

    Get the latest creative news from SmartMag about art & design.

    HealthxMagazine
    HealthxMagazine

    At HealthX Magazine, we are dedicated to empowering entrepreneurs, doctors, chiropractors, healthcare professionals, personal trainers, executives, thought leaders, and anyone striving for optimal health.

    Our Picks

    Overcoming Information Overload in 2026 Medical Research

    August 14, 2026

    The Urgent Gaps in Population Health: What Leaders Must Fix Now

    August 13, 2026

    The Growing Challenge of Treatment-Resistant Depression for Clinicians and Policymakers

    August 12, 2026
    New Comments
      Facebook X (Twitter) Instagram Pinterest
      • Home
      • Privacy Policy
      • Our Mission
      © 2026 ThemeSphere. Designed by ThemeSphere.

      Type above and press Enter to search. Press Esc to cancel.