T-cell acute lymphoblastic leukemia (T-ALL) is an aggressive blood cancer caused by the deregulation of key T-cell developmental pathways, including Notch signaling. Aberrant Notch signaling in T-ALL occurs by NOTCH1 gain-of-function mutations and by NOTCH3 overexpression. Although NOTCH3 is assumed as a Notch1 target, machinery driving its transcription in T-ALL is undefined in leukemia subsets lacking Notchl activation. Here, we found that the binding of the intracellular Notch3 domain, as well as of the activated Notchl fragment, to the NOTCH3 gene locus led to the recruitment of the H3K27 modifiers JMJD3 and p300, and it was required to preserve transcriptional permissive/active H3K27 marks and to sustain NOTCH3 gene expression levels. ...
Constitutive NOTCH signaling in lymphoid progenitors promotes the development of immature T-cell lym...
To understand the interactions between Notch1 and Ikaros in the evolution of T cell acute lymphoblas...
PI3K/AKT and NOTCH1 signaling pathways are frequently dysregulated in T-cell acute lymphoblastic leu...
T-cell acute lymphoblastic leukemia (T-ALL) is an aggressive blood cancer caused by the deregulation...
T-cell acute lymphoblastic leukemia (T-ALL) is an aggressive blood cancer caused by the deregulation...
Gain of function NOTCH1 mutations are common in both patients with T-ALL and in mouse models of the ...
Notch is a major oncogenic driver in T cell acute lymphoblastic leukemia (T-ALL), in part because it...
The Notch pathway plays a key role in several processes, including stem-cell self-renewal, prolifera...
Several studies have revealed that endosomal sorting controls the steady-state levels of Notch at th...
Recent work with mouse models and human leukemic samples has shown that gain-of-function mutation(s)...
Although cure rates have significantly improved for children with T-cell acute lymphoblastic leukemi...
International audience; Aberrant upregulation of NOTCH3 gene plays a critical role in cancer pathoge...
Activated Notch signaling is highly prevalent in T-cell acute lymphoblastic leukemia (T-ALL) and acc...
Tumour cells often express deregulated profiles of chemokine receptors that regulate cancer cell mig...
Deregulated Notch signaling is linked to onset and progression in various cancers. Epigenetic machin...
Constitutive NOTCH signaling in lymphoid progenitors promotes the development of immature T-cell lym...
To understand the interactions between Notch1 and Ikaros in the evolution of T cell acute lymphoblas...
PI3K/AKT and NOTCH1 signaling pathways are frequently dysregulated in T-cell acute lymphoblastic leu...
T-cell acute lymphoblastic leukemia (T-ALL) is an aggressive blood cancer caused by the deregulation...
T-cell acute lymphoblastic leukemia (T-ALL) is an aggressive blood cancer caused by the deregulation...
Gain of function NOTCH1 mutations are common in both patients with T-ALL and in mouse models of the ...
Notch is a major oncogenic driver in T cell acute lymphoblastic leukemia (T-ALL), in part because it...
The Notch pathway plays a key role in several processes, including stem-cell self-renewal, prolifera...
Several studies have revealed that endosomal sorting controls the steady-state levels of Notch at th...
Recent work with mouse models and human leukemic samples has shown that gain-of-function mutation(s)...
Although cure rates have significantly improved for children with T-cell acute lymphoblastic leukemi...
International audience; Aberrant upregulation of NOTCH3 gene plays a critical role in cancer pathoge...
Activated Notch signaling is highly prevalent in T-cell acute lymphoblastic leukemia (T-ALL) and acc...
Tumour cells often express deregulated profiles of chemokine receptors that regulate cancer cell mig...
Deregulated Notch signaling is linked to onset and progression in various cancers. Epigenetic machin...
Constitutive NOTCH signaling in lymphoid progenitors promotes the development of immature T-cell lym...
To understand the interactions between Notch1 and Ikaros in the evolution of T cell acute lymphoblas...
PI3K/AKT and NOTCH1 signaling pathways are frequently dysregulated in T-cell acute lymphoblastic leu...