Adipose tissue renewal and obesity-driven expansion of fat cell number are dependent on proliferation and differentiation of adipose progenitors that reside in the vasculature that develops in coordination with adipose depots. The transcriptional events that regulate commitment of progenitors to the adipose lineage are poorly understood. Because expression of the nuclear receptor PPARγ defines the adipose lineage, isolation of elements that control PPARγ expression in adipose precursors may lead to discovery of transcriptional regulators of early adipocyte determination. Here, we describe the identification and validation in transgenic mice of 5 highly conserved non-coding sequences from the PPARγ locus that can drive expression of a report...
The nuclear receptor PPAR γ is a key regulator of adipogenesis, and alterations of its function are ...
<div><p>Peroxisome proliferator-activated receptors (PPARs) are nuclear receptors that regulate expr...
The nuclear receptor PPAR γ is a key regulator of adipogenesis, and alterations of its function are ...
<div><p>Adipose tissue renewal and obesity-driven expansion of fat cell number are dependent on prol...
Adipose tissue renewal and obesity-driven expansion of fat cell number are dependent on proliferatio...
<p>Real-time qPCR analysis of <i>LacZ</i> (<b>A</b>), PPARγ (<b>B</b>), and adiponectin (<b>C</b>) e...
Adipose tissue is an important fat-storage and endocrine organ, whose dysfunction is closely associa...
International audienceThe nuclear receptor peroxisome proliferator-activated receptor (PPAR) is a tr...
The nuclear hormone receptor PPARγ is the master transcriptional regulator of adipogenesis. Thiazoli...
The nuclear receptor PPARγ is a key regulator of adipogenesis, and alterations of its function are a...
AbstractThe differentiation of uncommitted cells into specialized adipocytes occurs through a cascad...
International audienceThe nuclear receptor peroxisome proliferator-activated receptor gamma (PPARγ) ...
Adipocytes are the defining cell type of adipose tissue. Once considered a passive participant in en...
<p>(<b>A</b>) Comparative analysis of 100 Kb of sequence upstream of the PPARγ2 transcriptional star...
<div><p>Differentiation signaling results in reprogramming of cellular gene expression that leads to...
The nuclear receptor PPAR γ is a key regulator of adipogenesis, and alterations of its function are ...
<div><p>Peroxisome proliferator-activated receptors (PPARs) are nuclear receptors that regulate expr...
The nuclear receptor PPAR γ is a key regulator of adipogenesis, and alterations of its function are ...
<div><p>Adipose tissue renewal and obesity-driven expansion of fat cell number are dependent on prol...
Adipose tissue renewal and obesity-driven expansion of fat cell number are dependent on proliferatio...
<p>Real-time qPCR analysis of <i>LacZ</i> (<b>A</b>), PPARγ (<b>B</b>), and adiponectin (<b>C</b>) e...
Adipose tissue is an important fat-storage and endocrine organ, whose dysfunction is closely associa...
International audienceThe nuclear receptor peroxisome proliferator-activated receptor (PPAR) is a tr...
The nuclear hormone receptor PPARγ is the master transcriptional regulator of adipogenesis. Thiazoli...
The nuclear receptor PPARγ is a key regulator of adipogenesis, and alterations of its function are a...
AbstractThe differentiation of uncommitted cells into specialized adipocytes occurs through a cascad...
International audienceThe nuclear receptor peroxisome proliferator-activated receptor gamma (PPARγ) ...
Adipocytes are the defining cell type of adipose tissue. Once considered a passive participant in en...
<p>(<b>A</b>) Comparative analysis of 100 Kb of sequence upstream of the PPARγ2 transcriptional star...
<div><p>Differentiation signaling results in reprogramming of cellular gene expression that leads to...
The nuclear receptor PPAR γ is a key regulator of adipogenesis, and alterations of its function are ...
<div><p>Peroxisome proliferator-activated receptors (PPARs) are nuclear receptors that regulate expr...
The nuclear receptor PPAR γ is a key regulator of adipogenesis, and alterations of its function are ...