In the vertebrate nervous system, myelination of axons for rapid impulse propagation requires the synthesis of large amounts of lipids and proteins by oligodendrocytes and Schwann cells. Myelin membranes are thought to be cell-autonomously assembled by these axon-associated glial cells. Here, we report the surprising finding that in normal brain development, a substantial fraction of the lipids incorporated into central nervous system (CNS) myelin are contributed by astrocytes. The oligodendrocyte-specific inactivation of sterol regulatory element-binding protein (SREBP) cleavage-activating protein (SCAP), an essential coactivator of the transcription factor SREBP and thus of lipid biosynthesis, resulted in significantly retarded CNS myelin...
The mammalian nervous system is relatively autonomous in lipid metabolism. In particular, Schwann ce...
The mammalian CNS is considered to be autonomous in lipid metabolism. Glial cells, in particular ast...
Astrocytes have been implicated in regulating oligodendrocyte development and myelination in vitro, ...
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...
The integrity of central and peripheral nervous system myelin is affected in numerous lipid metaboli...
The integrity of central and peripheral nervous system myelin is affected in numerous lipid metaboli...
Myelination requires a massive increase in glial cell membrane synthesis. Here we demonstrate that t...
Oligodendrocytes (OLs) support neurons and signal transmission in the central nervous system (CNS) b...
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 ...
Oligodendrocytes (OLs) produce remarkable quantities of proteins and lipids during myelin biogenesis...
Remyelination is a regenerative process that is essential to recover saltatory conduction and to pre...
The formation of central nervous system myelin by oligodendrocytes requires sterol synthesis and is ...
Myelin consists of tightly compacted membranes that form an insulating sheath around axons. The func...
The mammalian nervous system is relatively autonomous in lipid metabolism. In particular, Schwann ce...
The mammalian CNS is considered to be autonomous in lipid metabolism. Glial cells, in particular ast...
Astrocytes have been implicated in regulating oligodendrocyte development and myelination in vitro, ...
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...
The integrity of central and peripheral nervous system myelin is affected in numerous lipid metaboli...
The integrity of central and peripheral nervous system myelin is affected in numerous lipid metaboli...
Myelination requires a massive increase in glial cell membrane synthesis. Here we demonstrate that t...
Oligodendrocytes (OLs) support neurons and signal transmission in the central nervous system (CNS) b...
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 ...
Oligodendrocytes (OLs) produce remarkable quantities of proteins and lipids during myelin biogenesis...
Remyelination is a regenerative process that is essential to recover saltatory conduction and to pre...
The formation of central nervous system myelin by oligodendrocytes requires sterol synthesis and is ...
Myelin consists of tightly compacted membranes that form an insulating sheath around axons. The func...
The mammalian nervous system is relatively autonomous in lipid metabolism. In particular, Schwann ce...
The mammalian CNS is considered to be autonomous in lipid metabolism. Glial cells, in particular ast...
Astrocytes have been implicated in regulating oligodendrocyte development and myelination in vitro, ...