MARK2 variants cause autism spectrum disorder via the downregulation of WNT/β-catenin signaling pathway
Gong, Maolei; Li, Jiayi; Qin, Zailong; Machado Bressan Wilke, Matheus Vernet; Liu, Yijun; Li, Qian; Liu, Haoran; Liang, Chen; Morales-Rosado, Joel A.; Cohen, Ana S.A.; Hughes, Susan S.; Sullivan, Bonnie R.; Waddell, Valerie; van den Boogaard, Marie José H.; van Jaarsveld, Richard H.; van Binsbergen, Ellen; van Gassen, Koen L.; Wang, Tianyun; Hiatt, Susan M.; Amaral, Michelle D.; Kelley, Whitley V.; Zhao, Jianbo; Feng, Weixing; Ren, Changhong; Yu, Yazhen; Boczek, Nicole J.; Ferber, Matthew J.; Lahner, Carrie; Elliott, Sherr; Ruan, Yiyan; Mignot, Cyril; Keren, Boris; Xie, Hua; Wang, Xiaoyan; Popp, Bernt; Zweier, Christiane; Piard, Juliette; Coubes, Christine; Mau-Them, Frederic Tran; Safraou, Hana; Innes, A. Micheil; Gauthier, Julie; Michaud, Jacques L.; Koboldt, Daniel C.; Sylvie, Odent; Willems, Marjolaine; Tan, Wen Hann; Cogne, Benjamin; Rieubland, Claudine; Braun, Dominique; McLean, Scott Douglas; Platzer, Konrad; Zacher, Pia; Oppermann, Henry; Evenepoel, Lucie; Blanc, Pierre; El Khattabi, Laïla; Haque, Neshatul; Dsouza, Nikita R.; Zimmermann, Michael T.; Urrutia, Raul; Klee, Eric W.; Shen, Yiping; Du, Hongzhen; Rappaport, Leonard; Liu, Chang Mei; Chen, Xiaoli
(2024) American Journal of Human Genetics, volume 111, issue 11, pp. 2392 - 2410
(Article)
Abstract
Microtubule affinity-regulating kinase 2 (MARK2) contributes to establishing neuronal polarity and developing dendritic spines. Although large-scale sequencing studies have associated MARK2 variants with autism spectrum disorder (ASD), the clinical features and variant spectrum in affected individuals with MARK2 variants, early developmental phenotypes in mutant human neurons, and the pathogenic mechanism
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underlying effects on neuronal development have remained unclear. Here, we report 31 individuals with MARK2 variants and presenting with ASD, other neurodevelopmental disorders, and distinctive facial features. Loss-of-function (LoF) variants predominate (81%) in affected individuals, while computational analysis and in vitro expression assay of missense variants supported the effect of MARK2 loss. Using proband-derived and CRISPR-engineered isogenic induced pluripotent stem cells (iPSCs), we show that MARK2 loss leads to early neuronal developmental and functional deficits, including anomalous polarity and dis-organization in neural rosettes, as well as imbalanced proliferation and differentiation in neural progenitor cells (NPCs). Mark2+/− mice showed abnormal cortical formation and partition and ASD-like behavior. Through the use of RNA sequencing (RNA-seq) and lithium treatment, we link MARK2 loss to downregulation of the WNT/β-catenin signaling pathway and identify lithium as a potential drug for treating MARK2-associated ASD.
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Keywords: ASD, autism spectrum disorder, lithium, LoF, loss-of-function, MARK2 variants, WNT/β-catenin signaling pathway, Genetics, Genetics(clinical)
ISSN: 0002-9297
Publisher: Cell Press
Note: Publisher Copyright: © 2024 The Author(s)
(Peer reviewed)