Charles Dean Stiles

Charles Dean Stiles, PhD

Professor of Neurobiology, Emeritus

We are currently focused on a pair of CNS-specific bHLH transcription factors known as Olig1 and Olig2. The two Olig genes map to within 40 kb of each other on human chromosome 21 within the Down syndrome critical region. During embryonic development and also in the postnatal brain, the two Olig genes are expressed in progenitor cells that give rise to oligodendrocytes and certain types of neurons (notably motor neurons). Beyond merely marking these cell types, targeted disruption of Olig1/2 in developing embryos disrupts patterning of the ventral spinal cord, ablates formation of oligodendrocytes throughout the CNS and prevents formation of motor neurons. The two Olig proteins are similar to each other within the DNA-targeting bHLH motif. Outside the bHLH domain however, Olig1 and Olig2 are very different proteins and this is reflected in non-overlapping biological functions. Olig1 function has been shown to be essential for the repair of demyelinating lesions in murine models of multiple sclerosis. Olig2 is expressed in the stem-like cells that are found in high-grade human gliomas and is essential for tumor formation in “genetically relevant” murine models of human glioma. Current activities in the Stiles lab are aimed at defining 1) structural features of the two Olig proteins that underlie their separate biological functions, 2) genetic targets of Olig genes and 3) key co-regulator proteins. A variety of methods are used towards these ends including mass spectroscopy, ChIP/Seq and high throughput RNAi screens.

"The two Olig genes map to within 40 kb of each other on human chromosome 21 within the Down syndrome critical region. During embryonic development and also in the postnatal brain, the two Olig genes are expressed in progenitor cells that give rise to oligodendrocytes and certain types of neurons (notably motor neurons)."

Publications View
Development of NG2 neural progenitor cells requires Olig gene function.
Authors: Authors: Ligon KL, Kesari S, Kitada M, Sun T, Arnett HA, Alberta JA, Anderson DJ, Stiles CD, Rowitch DH.
Proc Natl Acad Sci U S A
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Evidence for motoneuron lineage-specific regulation of Olig2 in the vertebrate neural tube.
Authors: Authors: Sun T, Hafler BP, Kaing S, Kitada M, Ligon KL, Widlund HR, Yuk DI, Stiles CD, Rowitch DH.
Dev Biol
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Targeted molecular therapy of malignant gliomas.
Authors: Authors: Kesari S, Ramakrishna N, Sauvageot C, Stiles CD, Wen PY.
Curr Oncol Rep
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Novel pheochromocytoma susceptibility loci identified by integrative genomics.
Authors: Authors: Dahia PL, Hao K, Rogus J, Colin C, Pujana MA, Ross K, Magoffin D, Aronin N, Cascon A, Hayashida CY, Li C, Toledo SP, Stiles CD.
Cancer Res
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A genome-wide in situ hybridization map of RNA-binding proteins reveals anatomically restricted expression in the developing mouse brain.
Authors: Authors: McKee AE, Minet E, Stern C, Riahi S, Stiles CD, Silver PA.
BMC Dev Biol
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A HIF1alpha regulatory loop links hypoxia and mitochondrial signals in pheochromocytomas.
Authors: Authors: Dahia PL, Ross KN, Wright ME, Hayashida CY, Santagata S, Barontini M, Kung AL, Sanso G, Powers JF, Tischler AS, Hodin R, Heitritter S, Moore F, Dluhy R, Sosa JA, Ocal IT, Benn DE, Marsh DJ, Robinson BG, Schneider K, Garber J, Arum SM, Korbonits M, Grossman A, Pigny P, Toledo SP, Nosé V, Li C, Stiles CD.
PLoS Genet
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Targeted molecular therapy of malignant gliomas.
Authors: Authors: Kesari S, Ramakrishna N, Sauvageot C, Stiles CD, Wen PY.
Curr Neurol Neurosci Rep
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Distinct temporal genetic signatures of neurogenic and gliogenic cues in cortical stem cell cultures.
Authors: Authors: Sauvageot C, Dahia PL, Lipan O, Park JK, Chang MS, Alberta JA, Stiles CD.
J Neurobiol
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Mouse brain organization revealed through direct genome-scale TF expression analysis.
Authors: Authors: Gray PA, Fu H, Luo P, Zhao Q, Yu J, Ferrari A, Tenzen T, Yuk DI, Tsung EF, Cai Z, Alberta JA, Cheng LP, Liu Y, Stenman JM, Valerius MT, Billings N, Kim HA, Greenberg ME, McMahon AP, Rowitch DH, Stiles CD, Ma Q.
Science
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bHLH transcription factor Olig1 is required to repair demyelinated lesions in the CNS.
Authors: Authors: Arnett HA, Fancy SP, Alberta JA, Zhao C, Plant SR, Kaing S, Raine CS, Rowitch DH, Franklin RJ, Stiles CD.
Science
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