TRAPPC6B biallelic variants cause a neurodevelopmental disorder with TRAPP II and trafficking disruptions

Author:

Almousa Hashem1,Lewis Sara A23,Bakhtiari Somayeh23,Nordlie Sandra Hinz23,Pagnozzi Alex4,Magee Helen23,Efthymiou Stephanie5ORCID,Heim Jennifer A2,Cornejo Patricia678,Zaki Maha S910,Anwar Najwa11,Maqbool Shazia11,Rahman Fatima11,Neilson Derek E12,Vemuri Anusha13,Jin Sheng Chih14ORCID,Yang Xiao-Ru15,Heidari Abolfazl16,van Gassen Koen17,Trimouille Aurélien18,Thauvin-Robinet Christel192021,Liu James23,Bruel Ange-Line2021,Tomoum Hoda22,Shata Mennatallah O22,Hashem Mais O23,Toosi Mehran Beiraghi2425,Karimiani Ehsan Ghayoor26,Yeşil Gözde27,Lingappa Lokesh28,Baruah Debangana28,Ebrahimzadeh Farnoosh29,Van-Gils Julien17,Faivre Laurence19,Zamani Mina3031ORCID,Galehdari Hamid30,Sadeghian Saeid32ORCID,Shariati Gholamreza3133,Mohammad Rahema5,van der Smagt Jasper17,Qari Alya34,Vincent John B35,Innes A Micheil15,Dursun Ali36,Özgül R Köksal36,Akar Halil Tuna36,Bilguvar Kaya3738,Mignot Cyril3940,Keren Boris39,Raveli Claudia41,Burglen Lydie42,Afenjar Alexandra42,Kaat Laura Donker43,van Slegtenhorst Marjon43,Alkuraya Fowzan23ORCID,Houlden Henry5ORCID,Padilla-Lopez Sergio23,Maroofian Reza5ORCID,Sacher Michael144ORCID,Kruer Michael C23

Affiliation:

1. Department of Biology , Concordia University, Montreal, Quebec H4B1R6 , Canada

2. Barrow Neurological Institute, Phoenix Children’s Hospital , Phoenix, AZ 85016 , USA

3. Departments of Child Health, Cellular and Molecular Medicine, Genetics, and Neurology, University of Arizona College of Medicine—Phoenix , Phoenix, AZ 85004 , USA

4. CSIRO Health and Biosecurity, The Australian e-Health Research Centre , Brisbane 4029 , Australia

5. Department of Neuromuscular Disorders, UCL Queen Square Institute of Neurology , London WC1N 3BG , UK

6. Pediatric Neuroradiology Division, Pediatric Radiology, Barrow Neurological Institute, Phoenix Children’s Hospital , Phoenix, AZ 85016 , USA

7. Department of Child Health, University of Arizona College of Medicine , Phoenix, AZ 85004 , USA

8. Department of Radiology, Mayo Clinic , Scottsdale, AZ 85259 , USA

9. Clinical Genetics Department, Human Genetics and Genome Research Division, National Research Centre , Cairo 12622 , Egypt

10. Genetics Department, Armed Forces College of Medicine (AFCM) , Cairo 4460015 , Egypt

11. Department of Developmental-Behavioural Paediatrics, The Children's Hospital and Institute of Child Health , Lahore 54000 , Pakistan

12. Genetics and Metabolism, Phoenix Children’s Hospital , Phoenix, AZ 85016 , USA

13. Department of Pathology, University of Chicago , Chicago, IL 60637 , USA

14. Department of Genetics, Washington University , St.Louis, MO 63110 , USA

15. Department of Medical Genetics and Alberta Children’s Hospital Research Institute, Cumming School of Medicine, University of Calgary , S.W. Calgary, AB T2N 4N1 , Canada

16. Reference Laboratory, Qazvin Medical University , Qazvin 34148-33245 , Iran

17. Division of Laboratories, Pharmacy and Biomedical Genetics, Section of Clinical Genetics, University Medical Center Utrecht (UMCU) , 3584 CX Utrecht , Netherlands

18. Laboratoire de Génétique Moléculaire, Service de Génétique Médicale, CHU Bordeaux—Hôpital Pellegrin, Place Amélie Raba Léon , 33000 Bordeaux , France

19. Department of Genetics and Reference Center for Development Disorders and Intellectual Disabilities, FHU TRANSLAD, CHU Dijon Bourgogne , 21000 Dijon , France

20. Unité Fontctionnelle d’Innovation diagnostiques des maladies rares, FHU TRANSLAD, CHU Dijon Bourgogne , 21000 Dijon , France

21. GAD ‘Génétique des Anomalies du Développement’, INSERM-Université de Bourgogne UMR1231 , 21078 Dijon , France

22. Department of Pediatrics, Ain Shams University , Cairo 11516 , Egypt

23. Department of Translational Genomics, Center for Genomic Medicine, King Faisal Specialist Hospital and Research Centre , Riyadh 11211 , Saudi Arabia

24. Pediatric Neurology Department, Ghaem Hospital, Mashhad University of Medical Sciences , Mashhad 13944-91388 , Iran

25. Neuroscience Research Center, Mashhad University of Medical Science , Mashhad 13944-91388 , Iran

26. Molecular and Clinical Sciences Institute, St.George’s, University of London , London SW17 0RE , UK

27. Istanbul Medical Faculty Department of Medical Genetics, Istanbul University , Istanbul 34452 , Turkey

28. Pediatric Neurology, Rainbow Children Hospital , Hyderabad 500034 , India

29. Department of Internal Medicine, Mashhad University of Medical Sciences , Mashhad 13944-91388 , Iran

30. Department of Biology, Faculty of Science, Shahid Chamran University of Ahvaz , Ahvaz 6135783151 , Iran

31. Narges Medical Genetics and Prenatal Diagnosis Laboratory , Ahvaz 6155889467 , Iran

32. Department of Pediatric Neurology, Golestan Medical, Educational, and Research Center, Ahvaz Jundishapur University of Medical Sciences , Ahvaz 6135733118 , Iran

33. Department of Medical Genetics, Faculty of Medicine, Ahvaz Jundishapur University of Medical Sciences , Ahvaz 6135733118 , Iran

34. Medical Genomics Department, Center for Genomic Medicine, King Faisal Specialist Hospital and Research Center , Riyadh 11564 , Saudi Arabia

35. Molecular Neuropsychiatry & Development (MiND) Lab, Campbell Family Mental Health Research Institute, Centre for Addiction and Mental Health , Toronto, ON M6J 1H4 , Canada

36. Department of Pediatric Metabolism, Hacettepe University, Faculty of Medicine & Institute of Child Health , Ankara 06800 , Turkey

37. Department of Medical Genetics, Acibadem Mehmet Ali Aydinlar University , Istanbul 34752 , Turkey

38. Department of Neurosurgery and Genetics, Yale University School of Medicine , New Haven, CT 06520 , USA

39. Département de Génétique, APHP Sorbonne Université, Hôpital Trousseau & Groupe Hospitalier Pitié-Salpêtrière , 75013 Paris , France

40. Centre de Référence Déficiences Intellectuelles de Causes Rares , 75012 Paris , France

41. APHP Sorbonne Université, Service de Neuropédiatrie, Hôpital Trousseau , 75012 Paris , France

42. Département de Génétique, Centre de référence des malformations et maladies congénitales du cervelet, APHP. Sorbonne Université, Hôpital Trousseau , 75012 Paris , France

43. Department of Clinical Genetics, Erasmus Medical Center , 3000 Rotterdam , The Netherlands

44. Department of Anatomy and Cell Biology, McGill University , Montreal, Quebec H3A0C7 , Canada

Abstract

Abstract Highly conserved transport protein particle (TRAPP) complexes regulate subcellular trafficking pathways. Accurate protein trafficking has been increasingly recognized to be critically important for normal development, particularly in the nervous system. Variants in most TRAPP complex subunits have been found to lead to neurodevelopmental disorders with diverse but overlapping phenotypes. We expand on limited prior reports on TRAPPC6B with detailed clinical and neuroradiologic assessments, and studies on mechanisms of disease, and new types of variants. We describe 29 additional patients from 18 independent families with biallelic variants in TRAPPC6B. We identified seven homozygous nonsense (n = 12 patients) and eight canonical splice-site variants (n = 17 patients). In addition, we identified one patient with compound heterozygous splice-site/missense variants with a milder phenotype and one patient with homozygous missense variants. Patients displayed non-progressive microcephaly, global developmental delay/intellectual disability, epilepsy and absent expressive language. Movement disorders including stereotypies, spasticity and dystonia were also observed. Brain imaging revealed reductions in cortex, cerebellum and corpus callosum size with frequent white matter hyperintensity. Volumetric measurements indicated globally diminished volume rather than specific regional losses. We identified a reduced rate of trafficking into the Golgi apparatus and Golgi fragmentation in patient-derived fibroblasts that was rescued by wild-type TRAPPC6B. Molecular studies revealed a weakened interaction between mutant TRAPPC6B (c.454C>T, p.Q152*) and its TRAPP binding partner TRAPPC3. Patient-derived fibroblasts from the TRAPPC6B (c.454C>T, p.Q152*) variant displayed reduced levels of TRAPPC6B as well as other TRAPP II complex-specific members (TRAPPC9 and TRAPPC10). Interestingly, the levels of the TRAPPC6B homologue TRAPPC6A were found to be elevated. Moreover, co-immunoprecipitation experiments showed that TRAPPC6A co-precipitates equally with TRAPP II and TRAPP III, while TRAPPC6B co-precipitates significantly more with TRAPP II, suggesting enrichment of the protein in the TRAPP II complex. This implies that variants in TRAPPC6B may preferentially affect TRAPP II functions compared to TRAPP III functions. Finally, we assessed phenotypes in a Drosophila TRAPPC6B-deficiency model. Neuronal TRAPPC6B knockdown impaired locomotion and led to wing posture defects, supporting a role for TRAPPC6B in neuromotor function. Our findings confirm the association of damaging biallelic TRAPPC6B variants with microcephaly, intellectual disability, language impairments, and epilepsy. A subset of patients also exhibited dystonia and/or spasticity with impaired ambulation. These features overlap with disorders arising from pathogenic variants in other TRAPP subunits, particularly components of the TRAPP II complex. These findings suggest that TRAPPC6B is essential for brain development and function, and TRAPP II complex activity may be particularly relevant for mediating this function.

Funder

Cerebral Palsy Alliance Research Foundation

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Neurology (clinical)

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