The neurodevelopmental spectrum of synaptic vesicle cycling disorders.


Type
Article
Change log
Authors
John, Abinayah 
Ng-Cordell, Elise 
Hanna, Nancy 
Brkic, Diandra 
Abstract

In this review, we describe and discuss neurodevelopmental phenotypes arising from rare, high penetrance genomic variants which directly influence synaptic vesicle cycling (SVC disorders). Pathogenic variants in each SVC disorder gene lead to disturbance of at least one SVC subprocess, namely vesicle trafficking (e.g. KIF1A and GDI1), clustering (e.g. TRIO, NRXN1 and SYN1), docking and priming (e.g. STXBP1), fusion (e.g. SYT1 and PRRT2) or re-uptake (e.g. DNM1, AP1S2 and TBC1D24). We observe that SVC disorders share a common set of neurological symptoms (movement disorders, epilepsies), cognitive impairments (developmental delay, intellectual disabilities, cerebral visual impairment) and mental health difficulties (autism, ADHD, psychiatric symptoms). On the other hand, there is notable phenotypic variation between and within disorders, which may reflect selective disruption to SVC subprocesses, spatiotemporal and cell-specific gene expression profiles, mutation-specific effects, or modifying factors. Understanding the common cellular and systems mechanisms underlying neurodevelopmental phenotypes in SVC disorders, and the factors responsible for variation in clinical presentations and outcomes, may translate to personalized clinical management and improved quality of life for patients and families.

Description
Keywords
Synaptic vesicle cycle, cerebral visual impairment, epilepsy, intellectual disability, mental health, movement disorders, Animals, Epilepsy, Humans, Intellectual Disability, Movement Disorders, Mutation, Neurodevelopmental Disorders, Synaptic Vesicles
Journal Title
J Neurochem
Conference Name
Journal ISSN
0022-3042
1471-4159
Volume Title
157
Publisher
Wiley
Sponsorship
Medical Research Council (MC_UU_00005/16)