Close Menu

    Subscribe to Updates

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

    What's Hot

    WMO Urges Increased Preparedness as El Niño Health Hazards Escalate

    September 24, 2026

    OECD Revises Up Its 2026 Global Growth Forecast to 2.9%

    September 24, 2026

    Russia Achieves Growth in Non-Energy Export Figures for 2026

    September 23, 2026
    • Home
    • Contact Us
    Lloyds WeeklyLloyds Weekly
    • Automotive
    • Business
    • Entertainment
    • Health
    • Lifestyle
    • Luxury
    • News
    • Sports
    • Technology
    • Travel
    Lloyds WeeklyLloyds Weekly
    Home » Researchers uncover pivotal proteins influencing severe asthma
    Health

    Researchers uncover pivotal proteins influencing severe asthma

    October 28, 2023
    Facebook WhatsApp Twitter Pinterest LinkedIn Telegram Tumblr Email Reddit VKontakte

    In a significant stride in understanding severe asthma, researchers have pinpointed the role of specific RNA-binding proteins in inflaming the airways. This novel discovery, emanating from King’s College London, could revolutionize our comprehension of asthma’s genetic drivers and provide new avenues for therapeutic interventions.

    Researchers uncover pivotal proteins influencing severe asthma

    Asthma, predominantly an inflammatory disease, is one of the leading chronic respiratory conditions worldwide, with a higher prevalence in children. While the inflammation mechanisms leading to asthma are known, the genetic intricacies that trigger them have remained elusive. The recent study has shed light on this very aspect.

    Scientists meticulously analyzed RNA genetic data from cells of individuals with and without asthma. RNA, crucial for transporting and deciphering DNA’s genetic code, relies on messenger RNA (mRNA) to convey protein details from a cell’s nucleus to its interior fluid. Crucially, RNA-binding proteins attach to these mRNAs, determining their location within cells and regulating protein formation.

    The pivotal finding was the identification of two RNA-binding proteins, ZFP36L1 and ZFP36L2, which displayed significant dysregulation in asthma patients. Restoring both proteins in the airway-lining cells of severe asthma sufferers revealed a distinct shift in genes controlling intense inflammation. The research posits that these two proteins essentially modulate gene expression in these cells, making them vital players in the asthma pathology.

    The team further explored the proteins’ role using mice exposed to allergens, inducing asthma-like conditions. They observed that these proteins were not correctly positioned in the rodents’ airway cells, rendering them dysfunctional. Such mislocalized proteins, the researchers argue, might exacerbate asthma’s inflammation by altering their cellular functions.

    Although this discovery heralds a fresh perspective on mRNA regulation in asthma’s genesis, it’s just the tip of the iceberg. More in-depth research will be imperative to conclusively determine these RNA proteins’ role in humans and their broader implications for respiratory health.

    Related Posts

    WMO Urges Increased Preparedness as El Niño Health Hazards Escalate

    September 24, 2026

    EU Reports Increase in Adult Obesity to 16.3% by 2025

    September 7, 2026

    UN Calls for Urgent Action as DRC Ebola Cases Surpass 6,000 Amid Growing Crisis

    September 2, 2026

    Russian researchers pioneer new coating technology for titanium implants

    August 19, 2026

    European Union Allocates €2.3 Million to Support Africa’s Fight Against Cholera

    August 18, 2026

    Guanabenz Undergoing Trials for Potential Slowdown of Rare Childhood Brain Disorder

    August 17, 2026

    Latest News

    WMO Urges Increased Preparedness as El Niño Health Hazards Escalate

    September 24, 2026

    OECD Revises Up Its 2026 Global Growth Forecast to 2.9%

    September 24, 2026

    Russia Achieves Growth in Non-Energy Export Figures for 2026

    September 23, 2026

    EU Reacts to Rising Oil Costs Amid Shifts in LNG and Gas Imports

    September 23, 2026

    European wheat advances amid ongoing Black Sea grain shipment restrictions

    September 22, 2026

    Austria Implements Measures as Drought and Heat Worsen Crop Shortfalls

    September 21, 2026

    EU Establishes Water Resilience Platform to Gather Expert Policy Contributions

    September 21, 2026

    Russia Projects Budget Shortfall in a Positive Scenario

    September 19, 2026
    © 2024 Lloyds Weekly | All Rights Reserved
    • Home
    • Contact Us

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