#nuclease — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #nuclease, aggregated by home.social.
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https://www.europesays.com/ie/612912/ Sino Biological launches SuperNuclease® Pro with free trial program #Bioprocessing #Cell #Diagnostic #Diagnostics #DNA #Éire #gmp #IE #Ireland #Manufacturing #MolecularDiagnostics #Nuclease #NucleicAcid #Science #Technology
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https://www.europesays.com/ie/591010/ AI-designed nucleases build on nature’s design #AI #Artificial #CAS #CRISPR #Éire #GeneEditing #IE #Intelligence #Ireland #Nuclease #Science
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A prior @PLOSBiology study showed that P. aeruginosa can cleave the decoding center of C. elegans #ribosomes. This new study identifies the agent as Ribocin, a #nuclease that cleaves helix 69 in eukaryotic ribosomes to block translation. https://plos.io/4uiNVIa
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A prior @PLOSBiology study showed that P. aeruginosa can cleave the decoding center of C. elegans #ribosomes. This new study identifies the agent as Ribocin, a #nuclease that cleaves helix 69 in eukaryotic ribosomes to block translation. https://plos.io/4uiNVIa
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A prior @PLOSBiology study showed that P. aeruginosa can cleave the decoding center of C. elegans #ribosomes. This new study identifies the agent as Ribocin, a #nuclease that cleaves helix 69 in eukaryotic ribosomes to block translation. https://plos.io/4uiNVIa
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A prior @PLOSBiology study showed that P. aeruginosa can cleave the decoding center of C. elegans #ribosomes. This new study identifies the agent as Ribocin, a #nuclease that cleaves helix 69 in eukaryotic ribosomes to block translation. https://plos.io/4uiNVIa
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A prior @PLOSBiology study showed that P. aeruginosa can cleave the decoding center of C. elegans #ribosomes. This new study identifies the agent as Ribocin, a #nuclease that cleaves helix 69 in eukaryotic ribosomes to block translation. https://plos.io/4uiNVIa
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New method can help better assess precision genome editing technology
Scientists and physicians can better assess precision genome editing technology using a new method made public today by…
#UnitedStates #US #USA #america #Biotechnology #blood #cancer #Cas9 #Cell #children #CRISPR #DNA #Gene #Genome #genomeediting #hematology #hospital #infectiousdiseases #Nuclease #research #science #technology #Therapeutics #Tsai #unitedstatesofamerica
https://www.europesays.com/2674294/ -
https://www.europesays.com/ie/235101/ New insights into alcohol-related DNA damage and cancer risk #Alcohol #Anemia #Biochemistry #blood #cancer #Cell #Compound #DNA #DNADamage #Éire #Enzyme #FanconiAnemia #Genetic #GeneticInformation #Health #IE #Ireland #Membrane #Nuclease #OrganicChemistry #Research
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Evolutionary analysis of the #nuclease Artemis suggests an important role in the domestication of RAG-like #transposons, such as that which gave rise to V(D)J recombination. Conserved residues crucial for nuclease activity are also identified @PLOSBiology https://plos.io/3RuyNpl
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Evolutionary analysis of the #nuclease Artemis suggests an important role in the domestication of RAG-like #transposons, such as that which gave rise to V(D)J recombination. Conserved residues crucial for nuclease activity are also identified @PLOSBiology https://plos.io/3RuyNpl
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Evolutionary analysis of the #nuclease Artemis suggests an important role in the domestication of RAG-like #transposons, such as that which gave rise to V(D)J recombination. Conserved residues crucial for nuclease activity are also identified @PLOSBiology https://plos.io/3RuyNpl
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Evolutionary analysis of the #nuclease Artemis suggests an important role in the domestication of RAG-like #transposons, such as that which gave rise to V(D)J recombination. Conserved residues crucial for nuclease activity are also identified @PLOSBiology https://plos.io/3RuyNpl
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Evolutionary analysis of the #nuclease Artemis suggests an important role in the domestication of RAG-like #transposons, such as that which gave rise to V(D)J recombination. Conserved residues crucial for nuclease activity are also identified @PLOSBiology https://plos.io/3RuyNpl
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Researchers discover #gene scissors that switch off with a built-in timer.
https://phys.org/news/2024-08-gene-scissors-built-timer.html
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Researchers discover #gene scissors that switch off with a built-in timer.
https://phys.org/news/2024-08-gene-scissors-built-timer.html
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Researchers discover #gene scissors that switch off with a built-in timer.
https://phys.org/news/2024-08-gene-scissors-built-timer.html
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Researchers discover #gene scissors that switch off with a built-in timer.
https://phys.org/news/2024-08-gene-scissors-built-timer.html
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Researchers discover #gene scissors that switch off with a built-in timer.
https://phys.org/news/2024-08-gene-scissors-built-timer.html
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Researchers use #machine_learning modeling tools to improve #zinc_finger #nuclease #editing technology.
https://phys.org/news/2024-05-machine-tools-zinc-finger-nuclease.html
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Researchers use #machine_learning modeling tools to improve #zinc_finger #nuclease #editing technology.
https://phys.org/news/2024-05-machine-tools-zinc-finger-nuclease.html
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Researchers use #machine_learning modeling tools to improve #zinc_finger #nuclease #editing technology.
https://phys.org/news/2024-05-machine-tools-zinc-finger-nuclease.html
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Researchers use #machine_learning modeling tools to improve #zinc_finger #nuclease #editing technology.
https://phys.org/news/2024-05-machine-tools-zinc-finger-nuclease.html
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Researchers use #machine_learning modeling tools to improve #zinc_finger #nuclease #editing technology.
https://phys.org/news/2024-05-machine-tools-zinc-finger-nuclease.html
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Snapshots of the smallest programmable #nuclease #TnpB published.
https://phys.org/news/2023-05-snapshots-smallest-programmable-nuclease-tnpb.html
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Snapshots of the smallest programmable #nuclease #TnpB published.
https://phys.org/news/2023-05-snapshots-smallest-programmable-nuclease-tnpb.html
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Snapshots of the smallest programmable #nuclease #TnpB published.
https://phys.org/news/2023-05-snapshots-smallest-programmable-nuclease-tnpb.html
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Snapshots of the smallest programmable #nuclease #TnpB published.
https://phys.org/news/2023-05-snapshots-smallest-programmable-nuclease-tnpb.html
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Snapshots of the smallest programmable #nuclease #TnpB published.
https://phys.org/news/2023-05-snapshots-smallest-programmable-nuclease-tnpb.html
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Crossovers during #meiosis result from biased resolution of #HollidayJunctions; this study presents genetic evidence that the #nuclease Exo1 promotes meiotic crossing over by protecting DNA nicks from ligation #PLOSBiology https://plos.io/40tKoXN
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Check out this CRISPR Medicine article highlighting the recent discovery of the #nuclease #Cas12a2, a new type of #CRISPR gene scissors. ✂️🧬
https://crisprmedicinenews.com/news/appetite-for-destruction-the-indiscriminate-nuclease-activity-of-cas12a2/ -
Check out this CRISPR Medicine article highlighting the recent discovery of the #nuclease #Cas12a2, a new type of #CRISPR gene scissors. ✂️🧬
https://crisprmedicinenews.com/news/appetite-for-destruction-the-indiscriminate-nuclease-activity-of-cas12a2/ -
Check out this CRISPR Medicine article highlighting the recent discovery of the #nuclease #Cas12a2, a new type of #CRISPR gene scissors. ✂️🧬
https://crisprmedicinenews.com/news/appetite-for-destruction-the-indiscriminate-nuclease-activity-of-cas12a2/ -
A #molecular machine's secret weapon exposed.
#RNA #mutations #Dis3L2 #nuclease
https://phys.org/news/2023-02-molecular-machine-secret-weapon-exposed.html
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A #molecular machine's secret weapon exposed.
#RNA #mutations #Dis3L2 #nuclease
https://phys.org/news/2023-02-molecular-machine-secret-weapon-exposed.html
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A #molecular machine's secret weapon exposed.
#RNA #mutations #Dis3L2 #nuclease
https://phys.org/news/2023-02-molecular-machine-secret-weapon-exposed.html