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#cytoplasm — Public Fediverse posts

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

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  1. Expanded Seq-Scope method boosts gene-mapping resolution within tissues

    In 2021, a technology developed at University of Michigan, called Seq-Scope, revolutionized the ability to map gene activity…
    #NewsBeep #News #Health #AU #Australia #Cytoplasm #Gene #Illumina #Laboratory #pH #Proteome #Technology
    newsbeep.com/au/509197/

  2. Expanded Seq-Scope method boosts gene-mapping resolution within tissues

    In 2021, a technology developed at University of Michigan, called Seq-Scope, revolutionized the ability to map gene activity…
    #NewsBeep #News #Health #AU #Australia #Cytoplasm #Gene #Illumina #Laboratory #pH #Proteome #Technology
    newsbeep.com/au/509197/

  3. Fascinating insights into the life of poly(A) #RNA subcellular fractions obtained in ESC mouse cells by metabolic labeling. Intriguing conclusion about the apparent long life of newly synthesized RNA in the nucleus.

    biorxiv.org/content/10.1101/20

    #molecularbiology #RNA #half-life #nucleus #cytoplasm

  4. Fascinating insights into the life of poly(A) #RNA subcellular fractions obtained in ESC mouse cells by metabolic labeling. Intriguing conclusion about the apparent long life of newly synthesized RNA in the nucleus.

    biorxiv.org/content/10.1101/20

    #molecularbiology #RNA #half-life #nucleus #cytoplasm

  5. Fascinating insights into the life of poly(A) #RNA subcellular fractions obtained in ESC mouse cells by metabolic labeling. Intriguing conclusion about the apparent long life of newly synthesized RNA in the nucleus.

    biorxiv.org/content/10.1101/20

    #molecularbiology #RNA #half-life #nucleus #cytoplasm

  6. Fascinating insights into the life of poly(A) #RNA subcellular fractions obtained in ESC mouse cells by metabolic labeling. Intriguing conclusion about the apparent long life of newly synthesized RNA in the nucleus.

    biorxiv.org/content/10.1101/20

    #molecularbiology #RNA #half-life #nucleus #cytoplasm

  7. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  8. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  9. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  10. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  11. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  12. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  13. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  14. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  15. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  16. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  17. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  18. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  19. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  20. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  21. How do stress-resistant #yeast spores exit their state of dormancy? @Sam_Plante_ @landrychristian &co show how such #spores transform the biophysical properties of their #cytoplasm and #proteome to return to vegetative growth #PLOSBiology plos.io/3mJBM1C

  22. #February 1, 1844
    #OTD Eduard Strasburger, #Polish-#German #Professor & #Botanist, is born.

    In 1882, he coined the terms “#Cytoplasm” and “#Nucleoplasm.”

    Six years later, he was the first person to observe #Chromosomes, and he did it using the glorious #Fritillaria imperialis or the #Crown #Imperial #Lily.

    What a gorgeous subject for such an important discovery!

    #Science #Gardening #Garden #Gardener #GardenersofMastodon #Nature #Flowers #FunFact

  23. #February 1, 1844
    #OTD Eduard Strasburger, #Polish-#German #Professor & #Botanist, is born.

    In 1882, he coined the terms “#Cytoplasm” and “#Nucleoplasm.”

    Six years later, he was the first person to observe #Chromosomes, and he did it using the glorious #Fritillaria imperialis or the #Crown #Imperial #Lily.

    What a gorgeous subject for such an important discovery!

    #Science #Gardening #Garden #Gardener #GardenersofMastodon #Nature #Flowers #FunFact

  24. #February 1, 1844
    #OTD Eduard Strasburger, #Polish-#German #Professor & #Botanist, is born.

    In 1882, he coined the terms “#Cytoplasm” and “#Nucleoplasm.”

    Six years later, he was the first person to observe #Chromosomes, and he did it using the glorious #Fritillaria imperialis or the #Crown #Imperial #Lily.

    What a gorgeous subject for such an important discovery!

    #Science #Gardening #Garden #Gardener #GardenersofMastodon #Nature #Flowers #FunFact

  25. #February 1, 1844
    #OTD Eduard Strasburger, #Polish-#German #Professor & #Botanist, is born.

    In 1882, he coined the terms “#Cytoplasm” and “#Nucleoplasm.”

    Six years later, he was the first person to observe #Chromosomes, and he did it using the glorious #Fritillaria imperialis or the #Crown #Imperial #Lily.

    What a gorgeous subject for such an important discovery!

    #Science #Gardening #Garden #Gardener #GardenersofMastodon #Nature #Flowers #FunFact

  26. #February 1, 1844
    #OTD Eduard Strasburger, #Polish-#German #Professor & #Botanist, is born.

    In 1882, he coined the terms “#Cytoplasm” and “#Nucleoplasm.”

    Six years later, he was the first person to observe #Chromosomes, and he did it using the glorious #Fritillaria imperialis or the #Crown #Imperial #Lily.

    What a gorgeous subject for such an important discovery!

    #Science #Gardening #Garden #Gardener #GardenersofMastodon #Nature #Flowers #FunFact

  27. Messenger #RNA (#mRNA) are biological #molecules that transfer the information coded by #genes in the nucleus to the #cytoplasm for protein synthesis by #ribosomes. mRNA sequences can be designed to encode specific proteins; the most well-known example of this is the mRNA #vaccines for #COVID-19
    #Biology #Pharmaceutical #sflorg
    sflorg.com/2022/11/phar1110220

  28. Messenger #RNA (#mRNA) are biological #molecules that transfer the information coded by #genes in the nucleus to the #cytoplasm for protein synthesis by #ribosomes. mRNA sequences can be designed to encode specific proteins; the most well-known example of this is the mRNA #vaccines for #COVID-19
    #Biology #Pharmaceutical #sflorg
    sflorg.com/2022/11/phar1110220

  29. Messenger #RNA (#mRNA) are biological #molecules that transfer the information coded by #genes in the nucleus to the #cytoplasm for protein synthesis by #ribosomes. mRNA sequences can be designed to encode specific proteins; the most well-known example of this is the mRNA #vaccines for #COVID-19
    #Biology #Pharmaceutical #sflorg
    sflorg.com/2022/11/phar1110220