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#cellularbiochemistry — Public Fediverse posts

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  1. Biomolecular condensates are concentrated molecular communities of DNA, RNA, and proteins within cells that can actively drive and regulate the cellular metabolic cycle. Recent findings demonstrate that these condensates can facilitate the formation of crucial carbon-nitrogen bonds to create new molecules, a critical first step in protein formation.
    #CellularBiochemistry #BiomedicalEngineering #MolecularCellBiology #ChemicalBiology #sflorg
    sflorg.com/2026/03/bchm0325260

  2. Biomolecular condensates are concentrated molecular communities of DNA, RNA, and proteins within cells that can actively drive and regulate the cellular metabolic cycle. Recent findings demonstrate that these condensates can facilitate the formation of crucial carbon-nitrogen bonds to create new molecules, a critical first step in protein formation.
    #CellularBiochemistry #BiomedicalEngineering #MolecularCellBiology #ChemicalBiology #sflorg
    sflorg.com/2026/03/bchm0325260

  3. Biomolecular condensates are concentrated molecular communities of DNA, RNA, and proteins within cells that can actively drive and regulate the cellular metabolic cycle. Recent findings demonstrate that these condensates can facilitate the formation of crucial carbon-nitrogen bonds to create new molecules, a critical first step in protein formation.
    #CellularBiochemistry #BiomedicalEngineering #MolecularCellBiology #ChemicalBiology #sflorg
    sflorg.com/2026/03/bchm0325260