Aberrant activation of fatty acid synthesis is a key feature of many advanced human cancers. Unlike in classical lipogenic tissues, this process has been implicated in membrane production required for rapid cell proliferation. Here, to gain further insight into the consequences of tumor-associated fatty acid synthesis, we have mimicked the lipogenic phenotype of cancer cells in Xenopus embryos by microinjection of RNA encoding the lipogenic transcription factor sterol regulatory element binding protein 1c (SREBP1c). Dramatic morphologic changes were observed that could be linked to alterations in Wnt and Hedgehog signaling, and ultimately to a distortion of the primary cilium. This is a sophisticated microtubular sensory organelle that is e...
The sterol regulatory element binding protein (SREBP) transcription factors have emerged as central ...
The correction of specific signaling defects can reverse the oncogenic phenotype of tumor cells by a...
Activation of de novo lipogenesis in cancer cells is increasingly recognized as a hallmark of aggres...
Aberrant activation of fatty acid synthesis is a key feature of many advanced human cancers. Unlike ...
Aberrant activation of fatty acid synthesis is a key feature of many advanced human cancers. Unlike ...
Distortion of primary cilium formation is increasingly recognized as a key event in many human patho...
One of the most important metabolic hallmarks of cancer cells is enhanced lipogenesis. Depending on ...
Prostate cancer (PCa) affects an estimated 250,000 men every year and causes 34,000 deaths annually....
International audienceIncreased de novo fatty acid (FA) synthesis is one hallmark of tumor cells, in...
ObjectiveIncreased de novo fatty acid (FA) synthesis and cholesterol biosynthesis have been independ...
Objective Increased de novo fatty acid (FA) synthesis and cholesterol biosynthesis have been indepen...
Most tumours have an aberrantly activated lipid metabolism1,2 that enables them to synthesize, elong...
873-878The reprogramming of lipid metabolism and signaling pathways is the central aspect of cancer ...
BACKGROUND & AIMS: De novo lipogenesis is believed to be involved in oncogenesis. We investigated th...
Activation of de novo lipogenesis in cancer cells is increasingly recognized as a hallmark of aggres...
The sterol regulatory element binding protein (SREBP) transcription factors have emerged as central ...
The correction of specific signaling defects can reverse the oncogenic phenotype of tumor cells by a...
Activation of de novo lipogenesis in cancer cells is increasingly recognized as a hallmark of aggres...
Aberrant activation of fatty acid synthesis is a key feature of many advanced human cancers. Unlike ...
Aberrant activation of fatty acid synthesis is a key feature of many advanced human cancers. Unlike ...
Distortion of primary cilium formation is increasingly recognized as a key event in many human patho...
One of the most important metabolic hallmarks of cancer cells is enhanced lipogenesis. Depending on ...
Prostate cancer (PCa) affects an estimated 250,000 men every year and causes 34,000 deaths annually....
International audienceIncreased de novo fatty acid (FA) synthesis is one hallmark of tumor cells, in...
ObjectiveIncreased de novo fatty acid (FA) synthesis and cholesterol biosynthesis have been independ...
Objective Increased de novo fatty acid (FA) synthesis and cholesterol biosynthesis have been indepen...
Most tumours have an aberrantly activated lipid metabolism1,2 that enables them to synthesize, elong...
873-878The reprogramming of lipid metabolism and signaling pathways is the central aspect of cancer ...
BACKGROUND & AIMS: De novo lipogenesis is believed to be involved in oncogenesis. We investigated th...
Activation of de novo lipogenesis in cancer cells is increasingly recognized as a hallmark of aggres...
The sterol regulatory element binding protein (SREBP) transcription factors have emerged as central ...
The correction of specific signaling defects can reverse the oncogenic phenotype of tumor cells by a...
Activation of de novo lipogenesis in cancer cells is increasingly recognized as a hallmark of aggres...