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#rnasplicing — Public Fediverse posts

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

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  1. PepGen Announces Topline Results from Lowest Dose (5 mg/kg) MAD Cohort in the Ongoing Phase 2 FREEDOM2 Study Demonstrating Favorable Safety, Splicing and vHOT Data

    – PGN-EDODM1 was generally well-tolerated with all adverse events mild or moderate and no serious adverse events reported…
    #NewsBeep #News #Medication #clinicalresults #FREEDOM2 #Health #neurologicaldiseases #oligonucleotide #Patients #PepGen #RNAsplicing #TheCompany #UK #UnitedKingdom
    newsbeep.com/uk/507180/

  2. This study shows that #RNAsplicing is widely dysregulated when #FMRP is lost; this involves multiple splicing factors, including MBNL1. In FMRP-depleted cells, Mbnl1 RNA is misspliced, mislocalizing #MBNL1, and in turn messing up further RNAs #PLOSBiology plos.io/3R6E9GN

  3. This study shows that #RNAsplicing is widely dysregulated when #FMRP is lost; this involves multiple splicing factors, including MBNL1. In FMRP-depleted cells, Mbnl1 RNA is misspliced, mislocalizing #MBNL1, and in turn messing up further RNAs #PLOSBiology plos.io/3R6E9GN

  4. This study shows that #RNAsplicing is widely dysregulated when #FMRP is lost; this involves multiple splicing factors, including MBNL1. In FMRP-depleted cells, Mbnl1 RNA is misspliced, mislocalizing #MBNL1, and in turn messing up further RNAs #PLOSBiology plos.io/3R6E9GN

  5. This study shows that #RNAsplicing is widely dysregulated when #FMRP is lost; this involves multiple splicing factors, including MBNL1. In FMRP-depleted cells, Mbnl1 RNA is misspliced, mislocalizing #MBNL1, and in turn messing up further RNAs #PLOSBiology plos.io/3R6E9GN

  6. This study shows that #RNAsplicing is widely dysregulated when #FMRP is lost; this involves multiple splicing factors, including MBNL1. In FMRP-depleted cells, Mbnl1 RNA is misspliced, mislocalizing #MBNL1, and in turn messing up further RNAs #PLOSBiology plos.io/3R6E9GN

  7. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  8. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  9. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  10. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  11. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  12. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  13. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  14. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  15. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  16. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  17. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  18. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  19. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  20. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  21. #scRNAseq of 18,900 pre-leukemic & leukemic cells reveals transformation of #Hematopoietic #StemCells into full-blown #AcuteMyeloidLeukemia, emphasizing the critical role of #RNAsplicing in the emergence & maintenance of #leukemia #PLOSBiology plos.io/3LOnfer

  22. 'Gene duplication and diversification allow hosts to mutate otherwise essential genes, whereas changes in transcriptional regulation can selectively activate genes should their constitutive expression be detrimental. To counter mutational tolerance, it has been suggested that viruses target essential genes as host cofactors, because the genes are less prone to variability'

    #Virology #HostPathogen #RNASplicing

    journals.plos.org/plosbiology/

  23. 'Gene duplication and diversification allow hosts to mutate otherwise essential genes, whereas changes in transcriptional regulation can selectively activate genes should their constitutive expression be detrimental. To counter mutational tolerance, it has been suggested that viruses target essential genes as host cofactors, because the genes are less prone to variability'

    #Virology #HostPathogen #RNASplicing

    journals.plos.org/plosbiology/

  24. 'Gene duplication and diversification allow hosts to mutate otherwise essential genes, whereas changes in transcriptional regulation can selectively activate genes should their constitutive expression be detrimental. To counter mutational tolerance, it has been suggested that viruses target essential genes as host cofactors, because the genes are less prone to variability'

    #Virology #HostPathogen #RNASplicing

    journals.plos.org/plosbiology/

  25. 'Gene duplication and diversification allow hosts to mutate otherwise essential genes, whereas changes in transcriptional regulation can selectively activate genes should their constitutive expression be detrimental. To counter mutational tolerance, it has been suggested that viruses target essential genes as host cofactors, because the genes are less prone to variability'

    #Virology #HostPathogen #RNASplicing

    journals.plos.org/plosbiology/

  26. "Here, we utilized unbiased genetic screens to map drug/gene interactions for a variety of clinically approved therapies used in the treatment of AML. This effort highlighted a unique genetic relationship between response to venetoclax and the function of specific RNA splicing factors."

    #AML #leukemia #venetoclax #BCL2 #Apoptosis #RNASplicing #AcuteMyeloidLeukemia

    cell.com/cancer-cell/fulltext/

  27. "Here, we utilized unbiased genetic screens to map drug/gene interactions for a variety of clinically approved therapies used in the treatment of AML. This effort highlighted a unique genetic relationship between response to venetoclax and the function of specific RNA splicing factors."

    #AML #leukemia #venetoclax #BCL2 #Apoptosis #RNASplicing #AcuteMyeloidLeukemia

    cell.com/cancer-cell/fulltext/

  28. "Here, we utilized unbiased genetic screens to map drug/gene interactions for a variety of clinically approved therapies used in the treatment of AML. This effort highlighted a unique genetic relationship between response to venetoclax and the function of specific RNA splicing factors."

    #AML #leukemia #venetoclax #BCL2 #Apoptosis #RNASplicing #AcuteMyeloidLeukemia

    cell.com/cancer-cell/fulltext/

  29. "Here, we utilized unbiased genetic screens to map drug/gene interactions for a variety of clinically approved therapies used in the treatment of AML. This effort highlighted a unique genetic relationship between response to venetoclax and the function of specific RNA splicing factors."

    #AML #leukemia #venetoclax #BCL2 #Apoptosis #RNASplicing #AcuteMyeloidLeukemia

    cell.com/cancer-cell/fulltext/

  30. Pre-mRNA splicing patterns cannot be accurately defined from total RNA data, unless degradation pathways are inactive. An example, using NMD inactivation (wondering to what extent nuclear degradation could be also involved ?):

    pubmed.ncbi.nlm.nih.gov/352644

    #RNAsplicing #nmd #ribosome

  31. Pre-mRNA splicing patterns cannot be accurately defined from total RNA data, unless degradation pathways are inactive. An example, using NMD inactivation (wondering to what extent nuclear degradation could be also involved ?):

    pubmed.ncbi.nlm.nih.gov/352644

    #RNAsplicing #nmd #ribosome

  32. Pre-mRNA splicing patterns cannot be accurately defined from total RNA data, unless degradation pathways are inactive. An example, using NMD inactivation (wondering to what extent nuclear degradation could be also involved ?):

    pubmed.ncbi.nlm.nih.gov/352644

    #RNAsplicing #nmd #ribosome