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Biallelic Mutations In Human DCC Cause Developmental Split Brain Syndrome

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2017

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Jamuar, S. S., K. Schmitz-Abe, A. M. D’Gama, M. Drottar, W. Chan, M. Peeva, S. Servattalab, et al. 2017. “Biallelic Mutations In Human DCC Cause Developmental Split Brain Syndrome.” Nature genetics 49 (4): 606-612. doi:10.1038/ng.3804. http://dx.doi.org/10.1038/ng.3804.

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Motor, sensory, and integrative activities of the brain are coordinated by a series of midline-bridging neuronal commissures whose development is tightly regulated. Here we report a novel human syndrome in which these commissures are widely disrupted, causing clinical manifestations of horizontal gaze palsy, scoliosis, and intellectual disability. Affected individuals were found to possess biallelic loss-of-function mutations in the axon guidance receptor Deleted in Colorectal Carcinoma (DCC), a gene previously implicated in congenital mirror movements when mutated in the heterozygous state, but whose biallelic loss-of-function human phenotype has not been reported. Structural MRI and diffusion tractography demonstrated broad disorganization of white matter tracts throughout the human CNS including loss of all commissural tracts at multiple levels of the neuraxis. Combined with data from animal models, these findings show that DCC is a master regulator of midline crossing and development of white matter projections throughout the human CNS.

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