Genetic regulation of the cell fate transition from lateral plate mesoderm to the specification of cardiomyocytes requires suppression of Wnt/β-catenin signaling, but the mechanism for this is not well understood. By analyzing gene expression and chromatin dynamics during directed differentiation of human embryonic stem cells (hESCs), we identified a suppressor of Wnt/β-catenin signaling, transmembrane protein 88 (TMEM88), as a potential regulator of cardiovascular progenitor cell (CVP) specification. During the transition from mesoderm to the CVP, TMEM88 has a chromatin signature of genes that mediate cell fate decisions, and its expression is highly upregulated in advance of key cardiac transcription factors in vitro and in vivo. In early...
SummaryDirected differentiation of human embryonic stem cells (ESCs) into cardiovascular cells provi...
Several studies have demonstrated a multiphasic role for Wnt signaling during embryonic cardiogenesi...
Wnts comprise a family of 20 lipid-modified glycoproteins in mammals and play critical roles during ...
Wnt/β-catenin signaling is an important regulator of differentiation and morphogenesis that can also...
AbstractNormal heart formation requires reiterative phases of canonical Wnt/β-catenin (Wnt) signalin...
Wnt/β-catenin signaling is an important regulator of differentiation and morphogenesis that can also...
AbstractNormal heart formation requires reiterative phases of canonical Wnt/β-catenin (Wnt) signalin...
SummaryWnt signaling is a key regulator of vertebrate heart development; however, specific roles for...
Funding: A Münsterberg acknowledges research grant funding from BHF (PG/15/77/31761) and BBSRC (BB/N...
Induction of vertebrate heart development requires inhibition of canonical/β-catenin dependent Wnt s...
SummaryWnt signaling is a key regulator of vertebrate heart development; however, specific roles for...
Abstract Wnt genes encode secreted signalling molecules that control embryonic development including...
Isl1 + cardiovascular progenitors and their downstream progeny play a pivotal role in cardiogenesis ...
Wnts comprise a family of 20 lipid-modified glycoproteins in mammals and play critical roles during ...
SummaryIsl1+ cardiovascular progenitors and their downstream progeny play a pivotal role in cardioge...
SummaryDirected differentiation of human embryonic stem cells (ESCs) into cardiovascular cells provi...
Several studies have demonstrated a multiphasic role for Wnt signaling during embryonic cardiogenesi...
Wnts comprise a family of 20 lipid-modified glycoproteins in mammals and play critical roles during ...
Wnt/β-catenin signaling is an important regulator of differentiation and morphogenesis that can also...
AbstractNormal heart formation requires reiterative phases of canonical Wnt/β-catenin (Wnt) signalin...
Wnt/β-catenin signaling is an important regulator of differentiation and morphogenesis that can also...
AbstractNormal heart formation requires reiterative phases of canonical Wnt/β-catenin (Wnt) signalin...
SummaryWnt signaling is a key regulator of vertebrate heart development; however, specific roles for...
Funding: A Münsterberg acknowledges research grant funding from BHF (PG/15/77/31761) and BBSRC (BB/N...
Induction of vertebrate heart development requires inhibition of canonical/β-catenin dependent Wnt s...
SummaryWnt signaling is a key regulator of vertebrate heart development; however, specific roles for...
Abstract Wnt genes encode secreted signalling molecules that control embryonic development including...
Isl1 + cardiovascular progenitors and their downstream progeny play a pivotal role in cardiogenesis ...
Wnts comprise a family of 20 lipid-modified glycoproteins in mammals and play critical roles during ...
SummaryIsl1+ cardiovascular progenitors and their downstream progeny play a pivotal role in cardioge...
SummaryDirected differentiation of human embryonic stem cells (ESCs) into cardiovascular cells provi...
Several studies have demonstrated a multiphasic role for Wnt signaling during embryonic cardiogenesi...
Wnts comprise a family of 20 lipid-modified glycoproteins in mammals and play critical roles during ...