Dominantly acting KIF5B variants with pleiotropic cellular consequences cause variable clinical phenotypes

Author:

Flex Elisabetta1,Albadri Shahad2,Radio Francesca Clementina3,Cecchetti Serena4,Lauri Antonella3,Priolo Manuela5,Kissopoulos Marta1,Carpentieri Giovanna13,Fasano Giulia3,Venditti Martina3,Magliocca Valentina3,Bellacchio Emanuele3,Welch Carrie L6,Colombo Paolo C7,Kochav Stephanie M7,Chang Richard8,Barrick Rebekah8,Trivisano Marina9,Micalizzi Alessia10,Borghi Rossella3,Messina Elena13,Mancini Cecilia3,Pizzi Simone3,De Santis Flavia11,Rosello Marion2ORCID,Specchio Nicola9,Compagnucci Claudia3,McWalter Kirsty12,Chung Wendy K67,Del Bene Filippo2ORCID,Tartaglia Marco3ORCID

Affiliation:

1. Department of Oncology and Molecular Medicine, Istituto Superiore di Sanità , 00161 Rome , Italy

2. Sorbonne Université, INSERM, CNRS, Institut de la Vision , 17 Rue Moreau, F-75012 Paris , France

3. Genetics and Rare Diseases Research Division, Ospedale Pediatrico Bambino Gesù, IRCCS , 00146 Rome , Italy

4. Core Facilities, Istituto Superiore di Sanità , 00161 Rome , Italy

5. UOSD Genetica Medica, Grande Ospedale Metropolitano "Bianchi Melacrino Morelli" , 89124 Reggio Calabria , Italy

6. Department of Pediatrics, Columbia University Irving Medical Center , NY, New York 10032 , USA

7. Department of Medicine, Columbia University Irving Medical Center , NY, New York 10032 , USA

8. Division of Metabolic Disorders, Children's Hospital of Orange County (CHOC) , CA, Orange 92868 , USA

9. Department of Neuroscience, Ospedale Pediatrico Bambino Gesù, IRCCS , 00146 Rome , Italy

10. Translational Cytogenomics Research Unit, Bambino Gesù Children's Hospital, IRCCS , 00146 Rome , Italy

11. Institut Curie, PSL Research University, INSERM U934, CNRS UMR3215 Paris, France

12. GeneDx , Gaithersburg, MD 20877 , USA

Abstract

Abstract Kinesins are motor proteins involved in microtubule (MT)-mediated intracellular transport. They contribute to key cellular processes, including intracellular trafficking, organelle dynamics and cell division. Pathogenic variants in kinesin-encoding genes underlie several human diseases characterized by an extremely variable clinical phenotype, ranging from isolated neurodevelopmental/neurodegenerative disorders to syndromic phenotypes belonging to a family of conditions collectively termed as ‘ciliopathies.’ Among kinesins, kinesin-1 is the most abundant MT motor for transport of cargoes towards the plus end of MTs. Three kinesin-1 heavy chain isoforms exist in mammals. Different from KIF5A and KIF5C, which are specifically expressed in neurons and established to cause neurological diseases when mutated, KIF5B is an ubiquitous protein. Three de novo missense KIF5B variants were recently described in four subjects with a syndromic skeletal disorder characterized by kyphomelic dysplasia, hypotonia and DD/ID. Here, we report three dominantly acting KIF5B variants (p.Asn255del, p.Leu498Pro and p.Leu537Pro) resulting in a clinically wide phenotypic spectrum, ranging from dilated cardiomyopathy with adult-onset ophthalmoplegia and progressive skeletal myopathy to a neurodevelopmental condition characterized by severe hypotonia with or without seizures. In vitro and in vivo analyses provide evidence that the identified disease-associated KIF5B variants disrupt lysosomal, autophagosome and mitochondrial organization, and impact cilium biogenesis. All variants, and one of the previously reported missense changes, were shown to affect multiple developmental processes in zebrafish. These findings document pleiotropic consequences of aberrant KIF5B function on development and cell homeostasis, and expand the phenotypic spectrum resulting from altered kinesin-mediated processes.

Funder

Fondation pour la Recherche Médicale

UNADEV/AVIESAN

Agence Nationale de la Recherche

Programme Investissements d’Avenir IHU FOReSIGHT

Fondazione Umberto Veronesi

Marie Skłodowska-Curie IF

Horizon 2020

Ministero della Ricerca

Ministero della Salute

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

Reference62 articles.

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4. The developmental biology of kinesins;Konjikusic;Dev. Biol.,2021

5. Genes and molecular pathways underpinning ciliopathies;Reiter;Nat. Rev. Mol. Cell Biol.,2017

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