4.6 Article

Phosphorylated olig1 localizes to the cytosol of oligodendrocytes and promotes membrane expansion and maturation

Journal

GLIA
Volume 60, Issue 9, Pages 1427-1436

Publisher

WILEY-BLACKWELL
DOI: 10.1002/glia.22364

Keywords

Olig1; phosphorylation; oligodendrocyte; differentiation

Categories

Funding

  1. National Natural Science Foundation of China (NSCF) [30870801, 30900465]
  2. Natural Science Foundation Project of Chongqing, CQ CSTC [2010BB5157]

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Oligodendroglial cells undergo rapid transcriptional and dynamic morphological transformation in order to effectively myelinate neuronal axons. Olig1, a basic helix-loop-helix transcription factor, functions to promote the transcription of myelin-specific genes and promotes differentiation and (re)myelination. While the role for nuclear Olig1 is well established, the function for cytoplasmic Olig1 remains uncertain. We observe that translocation of Olig1 into the cytosol highly correlates with differentiation of oligodendrocytes both invivo and invitro. By enforcing expression of a nuclear-specific form of Olig1 into OPCs in a null-Olig1 background, we demonstrate that nuclear Olig1 is sufficient to facilitate MBP expression, but with greatly diminished membrane volume and area. We demonstrate that serine 138 in the helix-loop-helix domain of Olig1 is phosphorylated and that this form resides in the cytosol. Mutating serine 138 to alanine restricts Olig1 to the nucleus, facilitating MBP expression but limiting membrane expansion. However, a serine to aspartic acid mutation results in the cytoplasmic localization of Olig1 enhancing membrane expansion. Our results suggest a novel role for a phosphorylated cytosolic Olig1 in membrane expansion and maturation of oligodendrocytes. (c) 2012 Wiley Periodicals, Inc.

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