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CIC is a critical regulator of neuronal differentiation
Inah Hwang,, Heng Pan,, Jun Yao, Olivier Elemento,, Hongwu Zheng,, Jihye Paik
Inah Hwang,, Heng Pan,, Jun Yao, Olivier Elemento,, Hongwu Zheng,, Jihye Paik
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Research Article Oncology Stem cells

CIC is a critical regulator of neuronal differentiation

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Abstract

Capicua (CIC), a member of the high mobility group–box (HMG-box) superfamily of transcriptional repressors, is frequently mutated in human oligodendrogliomas. However, its functions in brain development and tumorigenesis remain poorly understood. Here, we report that brain-specific deletion of Cic compromises developmental transition of neuroblasts to immature neurons in mouse hippocampus and compromises normal neuronal differentiation. Combined gene expression and ChIP-seq analyses identified VGF as an important CIC-repressed transcriptional surrogate involved in neuronal lineage regulation. Aberrant VGF expression promotes neural progenitor cell proliferation by suppressing their differentiation. Mechanistically, we demonstrated that CIC represses VGF expression by tethering SIN3-HDAC to form a transcriptional corepressor complex. Mass spectrometry analysis of CIC-interacting proteins further identified the BRG1-containing mSWI/SNF complex whose function is necessary for transcriptional repression by CIC. Together, this study uncovers a potentially novel regulatory pathway of CIC-dependent neuronal differentiation and may implicate these molecular mechanisms in CIC-dependent brain tumorigenesis.

Authors

Inah Hwang,, Heng Pan,, Jun Yao, Olivier Elemento,, Hongwu Zheng,, Jihye Paik

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Figure 2

Loss of CIC compromises neuronal maturation.

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Loss of CIC compromises neuronal maturation.
(A and B) IF analysis for C...
(A and B) IF analysis for CIC and NeuN. Scale bar: 200 μm. Inset magnification: 400×. (C) Co-IF for TBR1 and CIC expression in hippocampus. Open arrowheads point to TBR1-low cells, and closed arrowheads are on TBR1-high cells. Inset magnification: 800×. (D) IF analysis for TBR1 in P14 CicWT and CicKO brains. Scale bar: 50 μm. Inset magnification: 400×. For A–D, 3 animals were examined, and representative images are shown. (E) TBR1-high cells of images in D are counted. Mean ± SEM of the measurement from 50–60 DAPI from 3 animals. (F) IF analysis for MAP2a/b, NeuN, and BrdU in NTKD NPC and CicKD NPC at 8 days of differentiation. Scale bar: 50 μm. (G) Quantitation of experiments in F. Mean ± SEM of the measurement from 100 DAPI+ nuclei from 3 independent experiments. For E and G, statistical significance was determined by unpaired t test. *** P < 0.001. (H) WB analysis for each specific marker at day 5 of differentiation. Three experiments were conducted, and a representative result is shown. Samples were run on 2 gels, and the representative ACTB blot is shown.

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