Mammary epithelial stem cells are fundamental to maintain tissue integrity. Cancer stem cells (CSCs) are implicated in both treatment resistance and disease relapse, and the molecular bases of their malignant properties are still poorly understood. Here we show that both normal stem cells and CSCs of the breast are controlled by the prolyl-isomerase Pin1. Mechanistically, following interaction with Pin1, Notch1 and Notch4, key regulators of cell fate, escape from proteasomal degradation by their major ubiquitin-ligase Fbxw7α. Functionally, we show that Fbxw7α acts as an essential negative regulator of breast CSCs' expansion by restraining Notch activity, but the establishment of a Notch/Pin1 active circuitry opposes this effect, thus promot...
TP53 missense mutations dramatically influence tumor progression, however, their mechanism of action...
TP53 missense mutations dramatically influence tumor progression, however, their mechanism of action...
TP53 missense mutations dramatically influence tumor progression, however, their mechanism of action...
Mammary epithelial stem cells are fundamental to maintain tissue integrity. Cancer stem cells (CSCs)...
Mammary epithelial stem cells are fundamental to maintain tissue integrity. Cancer stem cells (CSCs)...
Mammary epithelial stem cells are fundamental to maintain tissue integrity. Cancer stem cells (CSCs)...
Signalling through Notch receptors requires ligand-induced cleavage to release the intracellular dom...
Abstract Overexpression of HER-2/Neu occurs in about 25–30% of breast cancer patients and is indicat...
<p><p>Pin1 specifically binds to and catalyzes the <i>cis-trans</i> isomerization of phosphorylated-...
4noCellular choices are determined by developmental and environmental stimuli through integrated sig...
Mammary gland development, various stages of mammary tumorigenesis and breast cancer progression hav...
In hormone receptor-positive breast cancers, most tumors in the early stages of development depend o...
Emerging evidence demonstrates that RUNX3 is a tumor suppressor in breast cancer. Inactivation of RU...
Developmental pathways such as Notch play a pivotal role in tissue-specific stem cell self-renewal a...
18Deregulated Notch signaling is associated with T-cell Acute Lymphoblastic Leukemia (T-ALL) develop...
TP53 missense mutations dramatically influence tumor progression, however, their mechanism of action...
TP53 missense mutations dramatically influence tumor progression, however, their mechanism of action...
TP53 missense mutations dramatically influence tumor progression, however, their mechanism of action...
Mammary epithelial stem cells are fundamental to maintain tissue integrity. Cancer stem cells (CSCs)...
Mammary epithelial stem cells are fundamental to maintain tissue integrity. Cancer stem cells (CSCs)...
Mammary epithelial stem cells are fundamental to maintain tissue integrity. Cancer stem cells (CSCs)...
Signalling through Notch receptors requires ligand-induced cleavage to release the intracellular dom...
Abstract Overexpression of HER-2/Neu occurs in about 25–30% of breast cancer patients and is indicat...
<p><p>Pin1 specifically binds to and catalyzes the <i>cis-trans</i> isomerization of phosphorylated-...
4noCellular choices are determined by developmental and environmental stimuli through integrated sig...
Mammary gland development, various stages of mammary tumorigenesis and breast cancer progression hav...
In hormone receptor-positive breast cancers, most tumors in the early stages of development depend o...
Emerging evidence demonstrates that RUNX3 is a tumor suppressor in breast cancer. Inactivation of RU...
Developmental pathways such as Notch play a pivotal role in tissue-specific stem cell self-renewal a...
18Deregulated Notch signaling is associated with T-cell Acute Lymphoblastic Leukemia (T-ALL) develop...
TP53 missense mutations dramatically influence tumor progression, however, their mechanism of action...
TP53 missense mutations dramatically influence tumor progression, however, their mechanism of action...
TP53 missense mutations dramatically influence tumor progression, however, their mechanism of action...