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#mirnas — Public Fediverse posts

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

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  1. How do multiple mature miRNAs simultaneously regulate a single biological process? This study shows that dual mature #miRNAs from one precursor regulate #cadmium absorption & accumulation in #rice, with implications for producing low-cadmium rice @PLOSBiology plos.io/4fiKFIh

  2. How do multiple mature miRNAs simultaneously regulate a single biological process? This study shows that dual mature #miRNAs from one precursor regulate #cadmium absorption & accumulation in #rice, with implications for producing low-cadmium rice @PLOSBiology plos.io/4fiKFIh

  3. How do multiple mature miRNAs simultaneously regulate a single biological process? This study shows that dual mature #miRNAs from one precursor regulate #cadmium absorption & accumulation in #rice, with implications for producing low-cadmium rice @PLOSBiology plos.io/4fiKFIh

  4. How do multiple mature miRNAs simultaneously regulate a single biological process? This study shows that dual mature #miRNAs from one precursor regulate #cadmium absorption & accumulation in #rice, with implications for producing low-cadmium rice @PLOSBiology plos.io/4fiKFIh

  5. How do multiple mature miRNAs simultaneously regulate a single biological process? This study shows that dual mature #miRNAs from one precursor regulate #cadmium absorption & accumulation in #rice, with implications for producing low-cadmium rice @PLOSBiology plos.io/4fiKFIh

  6. europesays.com/uk/799759/ Exercise alleviates cognitive dysfunction in Alzheimer’s disease mice via skeletal muscle-derived extracellular vesicles that enhance plaque clearance by microglia #Ageing #CognitiveAgeing #Fitness #general #Health #LifeSciences #miRNAs #Neurodegeneration #Neuroimmunology #UK #UnitedKingdom

  7. europesays.com/ie/364438/ Exercise alleviates cognitive dysfunction in Alzheimer’s disease mice via skeletal muscle-derived extracellular vesicles that enhance plaque clearance by microglia #Ageing #CognitiveAgeing #Éire #Fitness #general #Health #IE #Ireland #LifeSciences #miRNAs #Neurodegeneration #Neuroimmunology

  8. #microRNAs slow translating #ribosomes to prevent protein #misfolding in eukaryotes
    Hiroaki Sako, Tadashi Yamamoto and colleagues
    The unusual presence of #miRNAs targeting protein-coding sequences is shown to influence ribosome speed, thereby allowing time for accurate #polypeptide folding during protein translation.
    embopress.org/doi/full/10.1525

  9. #microRNAs slow translating #ribosomes to prevent protein #misfolding in eukaryotes
    Hiroaki Sako, Tadashi Yamamoto and colleagues
    The unusual presence of #miRNAs targeting protein-coding sequences is shown to influence ribosome speed, thereby allowing time for accurate #polypeptide folding during protein translation.
    embopress.org/doi/full/10.1525

  10. #microRNAs slow translating #ribosomes to prevent protein #misfolding in eukaryotes
    Hiroaki Sako, Tadashi Yamamoto and colleagues
    The unusual presence of #miRNAs targeting protein-coding sequences is shown to influence ribosome speed, thereby allowing time for accurate #polypeptide folding during protein translation.
    embopress.org/doi/full/10.1525

  11. #microRNAs slow translating #ribosomes to prevent protein #misfolding in eukaryotes
    Hiroaki Sako, Tadashi Yamamoto and colleagues
    The unusual presence of #miRNAs targeting protein-coding sequences is shown to influence ribosome speed, thereby allowing time for accurate #polypeptide folding during protein translation.
    embopress.org/doi/full/10.1525

  12. #microRNAs slow translating #ribosomes to prevent protein #misfolding in eukaryotes
    Hiroaki Sako, Tadashi Yamamoto and colleagues
    The unusual presence of #miRNAs targeting protein-coding sequences is shown to influence ribosome speed, thereby allowing time for accurate #polypeptide folding during protein translation.
    embopress.org/doi/full/10.1525

  13. "This review aims to consolidate past and current studies investigating the complexity of the miRNA interactome to provide the reader with a mechanistic view of how miRNAs shape macrophage behavior."

    #Immunology #Macrophage #miRNAs

    journals.aai.org/jimmunol/arti

  14. "This review aims to consolidate past and current studies investigating the complexity of the miRNA interactome to provide the reader with a mechanistic view of how miRNAs shape macrophage behavior."

    #Immunology #Macrophage #miRNAs

    journals.aai.org/jimmunol/arti

  15. "This review aims to consolidate past and current studies investigating the complexity of the miRNA interactome to provide the reader with a mechanistic view of how miRNAs shape macrophage behavior."

    #Immunology #Macrophage #miRNAs

    journals.aai.org/jimmunol/arti

  16. "This review aims to consolidate past and current studies investigating the complexity of the miRNA interactome to provide the reader with a mechanistic view of how miRNAs shape macrophage behavior."

    #Immunology #Macrophage #miRNAs

    journals.aai.org/jimmunol/arti

  17. Cephalopods like octopuses, squids and cuttlefish are highly intelligent animals with complex nervous systems. In “Science Advances”, a team led by Nikolaus Rajewsky of the Max Delbrück Center has now shown that their evolution is linked to a dramatic expansion of their microRNA repertoire.
    #Neuroscience #Brain #Evolution #miRNAs

    neurosciencenews.com/octopus-m

  18. Cephalopods like octopuses, squids and cuttlefish are highly intelligent animals with complex nervous systems. In “Science Advances”, a team led by Nikolaus Rajewsky of the Max Delbrück Center has now shown that their evolution is linked to a dramatic expansion of their microRNA repertoire.
    #Neuroscience #Brain #Evolution #miRNAs

    neurosciencenews.com/octopus-m

  19. Cephalopods like octopuses, squids and cuttlefish are highly intelligent animals with complex nervous systems. In “Science Advances”, a team led by Nikolaus Rajewsky of the Max Delbrück Center has now shown that their evolution is linked to a dramatic expansion of their microRNA repertoire.
    #Neuroscience #Brain #Evolution #miRNAs

    neurosciencenews.com/octopus-m

  20. Cephalopods like octopuses, squids and cuttlefish are highly intelligent animals with complex nervous systems. In “Science Advances”, a team led by Nikolaus Rajewsky of the Max Delbrück Center has now shown that their evolution is linked to a dramatic expansion of their microRNA repertoire.
    #Neuroscience #Brain #Evolution #miRNAs

    neurosciencenews.com/octopus-m