SummaryWNT signaling promotes the reprogramming of somatic cells to an induced pluripotent state. We provide genetic evidence that WNT signaling is a requisite step during the induction of pluripotency. Fibroblasts from individuals with focal dermal hypoplasia (FDH), a rare genetic syndrome caused by mutations in the essential WNT processing enzyme PORCN, fail to reprogram with standard methods. This blockade in reprogramming is overcome by ectopic WNT signaling and PORCN overexpression, thus demonstrating that WNT signaling is essential for reprogramming. The rescue of reprogramming is critically dependent on the level of WNT signaling: steady baseline activation of the WNT pathway yields karyotypically normal iPSCs, whereas daily stimulat...
AbstractWnt signaling plays important roles in development and disease. The X-chromosomal Porcupine ...
Wnt signaling is one of a handful of powerful signaling pathways that play crucial roles in the anim...
AbstractThe Wnt gene family consists of structurally related genes encoding secreted signaling molec...
SummaryWNT signaling promotes the reprogramming of somatic cells to an induced pluripotent state. We...
Summary: WNT signaling promotes the reprogramming of somatic cells to an induced pluripotent state. ...
Human somatic cells are capable of being reprogrammed to induced pluripotent stem (iPS) cells throug...
SummaryWnt signaling is intrinsic to mouse embryonic stem cell self-renewal. Therefore, it is surpri...
SummaryCyclic activation of the Wnt/β-catenin signaling pathway controls cell fusion-mediated somati...
Cyclic activation of the Wnt/β-catenin signaling pathway controls cell fusion-mediated somatic cell ...
SummaryCanonical Wnt signaling regulates the self-renewal of most if not all stem cell systems. In t...
SummaryTwo manuscripts published recently in Cell Stem Cell (Lluis et al., 2008 [this issue]; Marson...
The adaptive response of cells to external stimuli is an intriguing mechanism at the basis of the ex...
The technology to derive embryonic and induced pluripotent stem cells from early embryonic stages an...
Human development is complex. Countless molecular events guide a single cell and its daughters throu...
[Abstract] Intracellular signalling mediated by secreted Wnt proteins is essential for the establish...
AbstractWnt signaling plays important roles in development and disease. The X-chromosomal Porcupine ...
Wnt signaling is one of a handful of powerful signaling pathways that play crucial roles in the anim...
AbstractThe Wnt gene family consists of structurally related genes encoding secreted signaling molec...
SummaryWNT signaling promotes the reprogramming of somatic cells to an induced pluripotent state. We...
Summary: WNT signaling promotes the reprogramming of somatic cells to an induced pluripotent state. ...
Human somatic cells are capable of being reprogrammed to induced pluripotent stem (iPS) cells throug...
SummaryWnt signaling is intrinsic to mouse embryonic stem cell self-renewal. Therefore, it is surpri...
SummaryCyclic activation of the Wnt/β-catenin signaling pathway controls cell fusion-mediated somati...
Cyclic activation of the Wnt/β-catenin signaling pathway controls cell fusion-mediated somatic cell ...
SummaryCanonical Wnt signaling regulates the self-renewal of most if not all stem cell systems. In t...
SummaryTwo manuscripts published recently in Cell Stem Cell (Lluis et al., 2008 [this issue]; Marson...
The adaptive response of cells to external stimuli is an intriguing mechanism at the basis of the ex...
The technology to derive embryonic and induced pluripotent stem cells from early embryonic stages an...
Human development is complex. Countless molecular events guide a single cell and its daughters throu...
[Abstract] Intracellular signalling mediated by secreted Wnt proteins is essential for the establish...
AbstractWnt signaling plays important roles in development and disease. The X-chromosomal Porcupine ...
Wnt signaling is one of a handful of powerful signaling pathways that play crucial roles in the anim...
AbstractThe Wnt gene family consists of structurally related genes encoding secreted signaling molec...