Bi-allelic mutations in TRAPPC2L result in a neurodevelopmental disorder and have an impact on RAB11 in fibroblasts

Author:

Milev Miroslav P,Graziano Claudio,Karall Daniela,Kuper Willemijn F E,Al-Deri Noraldin,Cordelli Duccio Maria,Haack Tobias B,Danhauser Katharina,Iuso Arcangela,Palombo Flavia,Pippucci Tommaso,Prokisch Holger,Saint-Dic Djenann,Seri Marco,Stanga Daniela,Cenacchi Giovanna,van Gassen Koen L I,Zschocke Johannes,Fauth Christine,Mayr Johannes A,Sacher Michael,van Hasselt Peter M

Abstract

BackgroundThe combination of febrile illness-induced encephalopathy and rhabdomyolysis has thus far only been described in disorders that affect cellular energy status. In the absence of specific metabolic abnormalities, diagnosis can be challenging.ObjectiveThe objective of this study was to identify and characterise pathogenic variants in two individuals from unrelated families, both of whom presented clinically with a similar phenotype that included neurodevelopmental delay, febrile illness-induced encephalopathy and episodes of rhabdomyolysis, followed by developmental arrest, epilepsy and tetraplegia.MethodsWhole exome sequencing was used to identify pathogenic variants in the two individuals. Biochemical and cell biological analyses were performed on fibroblasts from these individuals and a yeast two-hybrid analysis was used to assess protein-protein interactions.ResultsProbands shared a homozygous TRAPPC2L variant (c.109G>T) resulting in a p.Asp37Tyr missense variant. TRAPPC2L is a component of transport protein particle (TRAPP), a group of multisubunit complexes that function in membrane traffic and autophagy. Studies in patient fibroblasts as well as in a yeast system showed that the p.Asp37Tyr protein was present but not functional and resulted in specific membrane trafficking delays. The human missense mutation and the analogous mutation in the yeast homologue Tca17 ablated the interaction between TRAPPC2L and TRAPPC10/Trs130, a component of the TRAPP II complex. Since TRAPP II activates the GTPase RAB11, we examined the activation state of this protein and found increased levels of the active RAB, correlating with changes in its cellular morphology.ConclusionsOur study implicates a RAB11 pathway in the aetiology of the TRAPPC2L disorder and has implications for other TRAPP-related disorders with similar phenotypes.

Funder

Natural Sciences and Engineering Research Council of Canada

E-Rare project GENOMIT

EU Horizon2020 Collaborative Research Project SOUND

Bundesministerium für Bildung und Forschung

Institute of Genetics

Publisher

BMJ

Subject

Genetics(clinical),Genetics

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