Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish

显性ARF3变异体破坏高尔基体完整性,导致神经发育障碍,这种障碍在斑马鱼中也有所体现。

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作者:Giulia Fasano # ,Valentina Muto # ,Francesca Clementina Radio # ,Martina Venditti ,Niloufar Mosaddeghzadeh ,Simona Coppola ,Graziamaria Paradisi ,Erika Zara ,Farhad Bazgir ,Alban Ziegler ,Giovanni Chillemi ,Lucia Bertuccini ,Antonella Tinari ,Annalisa Vetro ,Francesca Pantaleoni ,Simone Pizzi ,Libenzio Adrian Conti ,Stefania Petrini ,Alessandro Bruselles ,Ingrid Guarnetti Prandi ,Cecilia Mancini ,Balasubramanian Chandramouli ,Magalie Barth ,Céline Bris ,Donatella Milani ,Angelo Selicorni ,Marina Macchiaiolo ,Michaela V Gonfiantini ,Andrea Bartuli ,Riccardo Mariani ,Cynthia J Curry ,Renzo Guerrini ,Anne Slavotinek ,Maria Iascone ,Bruno Dallapiccola ,Mohammad Reza Ahmadian ,Antonella Lauri ,Marco Tartaglia

Abstract

Vesicle biogenesis, trafficking and signaling via Endoplasmic reticulum-Golgi network support essential developmental processes and their disruption lead to neurodevelopmental disorders and neurodegeneration. We report that de novo missense variants in ARF3, encoding a small GTPase regulating Golgi dynamics, cause a developmental disease in humans impairing nervous system and skeletal formation. Microcephaly-associated ARF3 variants affect residues within the guanine nucleotide binding pocket and variably perturb protein stability and GTP/GDP binding. Functional analysis demonstrates variably disruptive consequences of ARF3 variants on Golgi morphology, vesicles assembly and trafficking. Disease modeling in zebrafish validates further the dominant behavior of the mutants and their differential impact on brain and body plan formation, recapitulating the variable disease expression. In-depth in vivo analyses traces back impaired neural precursors' proliferation and planar cell polarity-dependent cell movements as the earliest detectable effects. Our findings document a key role of ARF3 in Golgi function and demonstrate its pleiotropic impact on development.

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