YTHDF1 regulates chemotherapy response by suppressing NOTCH1-induced stemness in colorectal cancer.
RNA regulation intersects with treatment resistance.
doi.org/10.1038/s413...
#ColorectalCancer #YTHDF1 #NOTCH1 #CancerStemness #ChemotherapyResponse #Epitranscriptomics
New Research article in LSA:
The Notch1 intracellular domain orchestrates mechanotransduction of fluid shear stress
#Notch1 #CellBiology
@ctbatucsf.bsky.social
Take a look: 👇
www.life-science-alliance.org/content/9/4/...
#YTHDF1 drives #ColorectalCancer stemness, #tumorigenesis, and #chemoresistance by enhancing m6A-dependent #NOTCH1 translation, while its inhibition suppresses #tumor growth and improves chemotherapy response.
#OpenAccess in #STTT: doi.org/10.1038/s413...
Activated #Notch1 signaling drives #BMP2-induced endochondral #ossification in #MSCs by suppressing #Sox9-driven chondrogenesis and enhancing #VEGFA-mediated #angiogenesis, highlighting Notch1 as a target to improve #CartilageRegeneration.
#OpenAccess: doi.org/10.1016/j.ge...
Prox1 Suppresses Proliferation and Drug Resistance of Retinoblastoma Cells via Targeting Notch1
This study demonstrates that #Prox1 suppresses #Retinoblastoma (RB) #CellProliferation and #DrugResistance through regulation of #Notch1, positioning Prox1 as a promising therapeutic target in RB and opening new avenues for #TranslationalOncology. #medsky
Read: link.springer.com/article/10.1...
The m6A reader #YTHDF1 drives #ColorectalCancer stemness, #tumorigenesis, and #chemoresistance by binding #m6A‑modified #NOTCH1; targeting YTHDF1 improves #chemotherapy efficacy, offering a promising therapeutic strategy. #medsky
#OpenAccess in #STTT: doi.org/10.1038/s413...
Bruton tyrosine kinase inhibitors (#BTKis) appeared to offset the adverse prognostic impact of #NOTCH1 mutations in chronic lymphocytic leukemia (#CLL). Study in European Journal of Haematology.
Read more: https://bit.ly/4gTTqam
#RareDisease #Leukemia #Hematology #Oncology #OncSky #RareSky
Published in @natcomms.nature.com :
💡Using #AI, Harald Steiner and his collaborator Dmitrij Frishman show how the enzyme γ-secretase, associated with #Alzheimer 's , chooses its target #proteins.
➡️ tinyurl.com/4v9dc5jt
Foto: Steiner Lab/BMC #amyloid #Notch1 #cell #carcinogenesis #XAI #neurobiology