Variants in ADD1 cause intellectual disability, corpus callosum dysgenesis, and ventriculomegaly in humans

ADD1 基因变异会导致人类智力障碍、胼胝体发育不良和脑室扩大

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作者:Cai Qi, Irena Feng, Ana Rita Costa, Rita Pinto-Costa, Jennifer E Neil, Oana Caluseriu, Dong Li, Rebecca D Ganetzky, Charlotte Brasch-Andersen, Christina Fagerberg, Lars Kjærsgaard Hansen, Caleb Bupp, Colleen Clarke Muraresku, Xiangbin Ruan, Bowei Kang, Kaining Hu, Rong Zhong, Pedro Brites, Elizabeth

Conclusion

Our human and mouse genetics results indicate that pathogenic ADD1 variants cause corpus callosum dysgenesis, ventriculomegaly, and/or ID.

Methods

We used exome sequencing to uncover ADD1 variants associated with intellectual disability (ID) and brain malformations. We studied ADD1 splice isoforms in mouse and human neocortex development with RNA sequencing, super resolution imaging, and immunoblotting. We investigated 4 variant ADD1 proteins and heterozygous ADD1 cells for protein expression and ADD1-ADD2 dimerization. We studied Add1 functions in vivo using Add1 knockout mice.

Purpose

Adducins interconnect spectrin and actin filaments to form polygonal scaffolds beneath the cell membranes and form ring-like structures in neuronal axons. Adducins regulate mouse neural development, but their function in the human brain is unknown.

Results

We uncovered loss-of-function ADD1 variants in 4 unrelated individuals affected by ID and/or structural brain defects. Three additional de novo copy number variations covering the ADD1 locus were associated with ID and brain malformations. ADD1 is highly expressed in the neocortex and the corpus callosum, whereas ADD1 splice isoforms are dynamically expressed between cortical progenitors and postmitotic neurons. Human variants impair ADD1 protein expression and/or dimerization with ADD2. Add1 knockout mice recapitulate corpus callosum dysgenesis and ventriculomegaly phenotypes.

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