The mammalian nervous system is relatively autonomous in lipid metabolism. In particular, Schwann cells in the peripheral nervous system, and oligodendrocytes and astrocytes in the central nervous system, are highly active in lipid synthesis. Previously, enzymatic lipid synthesis in the liver has been demonstrated to be under the control of the sterol regulatory element-binding protein (SREBP) transcription factors. Here, we put forward the view that SREBP transcription factors in glia cells control the synthesis of lipids involved in various glia-neuron interactions, thereby affecting a range of neuronal functions. This minireview compiles current knowledge on the involvement of Schwann cell SREBPs in myelination of axons in the peripheral...
The mammalian CNS is considered to be autonomous in lipid metabolism. Glial cells, in particular ast...
Sterol regulatory element-binding protein (SREBP) transcription factors regulate cellular lipogenesi...
<p><b>A)</b> Protein levels of precursor sterol regulatory element-binding protein 2 (SREBP2) and ma...
Our previous work demonstrated that the sterol response element binding proteins (SREBP)-1 and SREBP...
Our previous work demonstrated that the sterol response element binding proteins (SREBP)-1 and SREBP...
The brain is considered to be autonomous in lipid synthesis with astrocytes producing lipids far mor...
In the vertebrate nervous system, myelination of axons for rapid impulse propagation requires the sy...
In the vertebrate nervous system, myelination of axons for rapid impulse propagation requires the sy...
Myelination requires a massive increase in glial cell membrane synthesis. Here, we demonstrate that ...
Myelination requires a massive increase in glial cell membrane synthesis. Here, we demonstrate that ...
Brain cholesterol is produced mainly by astrocytes and is important for neuronal function. Its biosy...
Sterol regulatory element binding proteins (SREBPs) are a family of transcription factors that regul...
Myelination requires a massive increase in glial cell membrane synthesis. Here we demonstrate that t...
We report that the neurotrophin receptor p75 contributes to sensory neuron survival through the regu...
openSterol regulatory element binding proteins (SREBPs) are a family of transcription factors that r...
The mammalian CNS is considered to be autonomous in lipid metabolism. Glial cells, in particular ast...
Sterol regulatory element-binding protein (SREBP) transcription factors regulate cellular lipogenesi...
<p><b>A)</b> Protein levels of precursor sterol regulatory element-binding protein 2 (SREBP2) and ma...
Our previous work demonstrated that the sterol response element binding proteins (SREBP)-1 and SREBP...
Our previous work demonstrated that the sterol response element binding proteins (SREBP)-1 and SREBP...
The brain is considered to be autonomous in lipid synthesis with astrocytes producing lipids far mor...
In the vertebrate nervous system, myelination of axons for rapid impulse propagation requires the sy...
In the vertebrate nervous system, myelination of axons for rapid impulse propagation requires the sy...
Myelination requires a massive increase in glial cell membrane synthesis. Here, we demonstrate that ...
Myelination requires a massive increase in glial cell membrane synthesis. Here, we demonstrate that ...
Brain cholesterol is produced mainly by astrocytes and is important for neuronal function. Its biosy...
Sterol regulatory element binding proteins (SREBPs) are a family of transcription factors that regul...
Myelination requires a massive increase in glial cell membrane synthesis. Here we demonstrate that t...
We report that the neurotrophin receptor p75 contributes to sensory neuron survival through the regu...
openSterol regulatory element binding proteins (SREBPs) are a family of transcription factors that r...
The mammalian CNS is considered to be autonomous in lipid metabolism. Glial cells, in particular ast...
Sterol regulatory element-binding protein (SREBP) transcription factors regulate cellular lipogenesi...
<p><b>A)</b> Protein levels of precursor sterol regulatory element-binding protein 2 (SREBP2) and ma...