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#genesilencing — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #genesilencing, aggregated by home.social.

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  1. Researchers uncover nuclear organization mechanism linked to Friedreich’s ataxia

    Researchers have uncovered a fundamental rule that governs how genes are physically arranged inside the cell nucleus, and…
    #Nuclear #Ataxia #Cell #CellNucleus #Cohesin #DNA #Friedreich'sAtaxia #Gene #GeneSilencing #genes #Genome #hospital #medicine #nuclear #Protein #research #transcription
    europesays.com/2985368/

  2. Systemic epigenetic dysregulation as a driver of ageing and a therapeutic target

    Guo, J. et al. Aging and aging-related diseases: from molecular mechanisms to interventions and treatments. Signal. Transduct. Target.…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Science #Ageing #Biochemistry #CancerResearch #cellbiology #Chromatin #Developmentalbiology #Genesilencing #general #LifeSciences #Stemcells
    newsbeep.com/us/551744/

  3. Systemic epigenetic dysregulation as a driver of ageing and a therapeutic target

    Guo, J. et al. Aging and aging-related diseases: from molecular mechanisms to interventions and treatments. Signal. Transduct. Target.…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Science #Ageing #Biochemistry #CancerResearch #cellbiology #Chromatin #Developmentalbiology #Genesilencing #general #LifeSciences #Stemcells
    newsbeep.com/us/551744/

  4. Gene silencing, while highly useful, has limitations in how specific it can work. Meanwhile, DNA enzymes (DNAzymes) are so accurate they can pick out incorrect alleles in RNA sequences.

    But the usage of these is curtailed by their low activity due to needing high environmental magnesium.

    Now, researchers have developed a targeted DNAzyme without this problem, able to target disease-causing genes.

    #DNA #RNA #Medicine #Enzymes #DNAzymes #GeneSilencing #Science #Scicomm

    nature.com/articles/s41467-023

  5. Gene silencing, while highly useful, has limitations in how specific it can work. Meanwhile, DNA enzymes (DNAzymes) are so accurate they can pick out incorrect alleles in RNA sequences.

    But the usage of these is curtailed by their low activity due to needing high environmental magnesium.

    Now, researchers have developed a targeted DNAzyme without this problem, able to target disease-causing genes.

    #DNA #RNA #Medicine #Enzymes #DNAzymes #GeneSilencing #Science #Scicomm

    nature.com/articles/s41467-023

  6. Gene silencing, while highly useful, has limitations in how specific it can work. Meanwhile, DNA enzymes (DNAzymes) are so accurate they can pick out incorrect alleles in RNA sequences.

    But the usage of these is curtailed by their low activity due to needing high environmental magnesium.

    Now, researchers have developed a targeted DNAzyme without this problem, able to target disease-causing genes.

    #DNA #RNA #Medicine #Enzymes #DNAzymes #GeneSilencing #Science #Scicomm

    nature.com/articles/s41467-023

  7. Gene silencing, while highly useful, has limitations in how specific it can work. Meanwhile, DNA enzymes (DNAzymes) are so accurate they can pick out incorrect alleles in RNA sequences.

    But the usage of these is curtailed by their low activity due to needing high environmental magnesium.

    Now, researchers have developed a targeted DNAzyme without this problem, able to target disease-causing genes.

    #DNA #RNA #Medicine #Enzymes #DNAzymes #GeneSilencing #Science #Scicomm

    nature.com/articles/s41467-023

  8. Gene silencing, while highly useful, has limitations in how specific it can work. Meanwhile, DNA enzymes (DNAzymes) are so accurate they can pick out incorrect alleles in RNA sequences.

    But the usage of these is curtailed by their low activity due to needing high environmental magnesium.

    Now, researchers have developed a targeted DNAzyme without this problem, able to target disease-causing genes.

    #DNA #RNA #Medicine #Enzymes #DNAzymes #GeneSilencing #Science #Scicomm

    nature.com/articles/s41467-023