Reduced dynamin-1 levels in neurons lacking MUNC18-1.

J Cell Sci

Depatment of Functional Genomics, Centre for Neurogenomics and Cognitive Research, VU University Amsterdam, 1081 HV Amsterdam, The Netherlands.

Published: November 2022

AI Article Synopsis

  • * In Stxbp1 null mutants, dynamin-1 levels drop significantly, and the transcript levels of its encoding gene, Dnm1, are also reduced by 50%, impacting several other endocytic proteins to a lesser degree.
  • * The study indicates that MUNC18-1 does not directly bind dynamin-1, and reducing dynamin-1 alone doesn’t cause neurodegeneration in Stxbp1 mutants, suggesting that MUNC18-1

Article Abstract

MUNC18-1 (also known as syntaxin-binding protein-1, encoded by Stxbp1) binds to syntaxin-1. Together, these proteins regulate synaptic vesicle exocytosis and have a separate role in neuronal viability. In Stxbp1 null mutant neurons, syntaxin-1 protein levels are reduced by 70%. Here, we show that dynamin-1 protein levels are reduced at least to the same extent, and transcript levels of Dnm1 (which encodes dynamin-1) are reduced by 50% in Stxbp1 null mutant brain. Several, but not all, other endocytic proteins were also found to be reduced, but to a lesser extent. The reduced dynamin-1 expression was not observed in SNAP25 null mutants or in double-null mutants of MUNC13-1 and -2 (also known as Unc13a and Unc13b, respectively), in which synaptic vesicle exocytosis is also blocked. Co-immunoprecipitation experiments demonstrated that dynamin-1 and MUNC18-1 do not bind directly. Furthermore, MUNC18-1 levels were unaltered in neurons lacking all three dynamin paralogues. Finally, overexpression of dynamin-1 was not sufficient to rescue neuronal viability in Stxbp1 null mutant neurons; thus, the reduction in dynamin-1 is not the single cause of neurodegeneration of these neurons. The reduction in levels of dynamin-1 protein and mRNA, as well as of other endocytosis proteins, in Stxbp1 null mutant neurons suggests that MUNC18-1 directly or indirectly controls expression of other presynaptic genes.

Download full-text PDF

Source
http://dx.doi.org/10.1242/jcs.260132DOI Listing

Publication Analysis

Top Keywords

stxbp1 null
16
null mutant
16
mutant neurons
12
reduced dynamin-1
8
neurons lacking
8
synaptic vesicle
8
vesicle exocytosis
8
neuronal viability
8
viability stxbp1
8
protein levels
8

Similar Publications

Article Synopsis
  • EEG is crucial for diagnosing and managing genetic epilepsies in children, yet the relationship between quantitative EEG features and neurological outcomes is not well understood.* -
  • The study analyzed EEG data from children with specific genetic variants, used a control group, and created models to compare EEG features like the alpha-delta ratio to predict diagnoses and neurological outcomes.* -
  • Results showed significant differences in the alpha-delta ratio between genetic epilesies and controls, with high accuracy in predicting diagnoses, allowing for the identification of potential biomarkers for different genetic disorders in epilepsy.*
View Article and Find Full Text PDF

Syntaxin-binding protein 1 (STXBP1) is a presynaptic protein that plays important roles in synaptic vesicle docking and fusion. STXBP1 haploinsufficiency causes STXBP1 encephalopathy (STXBP1-E), which encompasses neurological disturbances including epilepsy, neurodevelopmental disorders, and movement disorders. Most patients with STXBP1-E present with regression and movement disorders in adulthood, highlighting the importance of a deeper understanding of the neurodegenerative aspects of STXBP1-E.

View Article and Find Full Text PDF

Reduced synaptic depression in human neurons carrying homozygous disease-causing STXBP1 variant L446F.

Hum Mol Genet

May 2024

Department of Functional Genomics, Center for Neurogenomics and Cognitive Research, Vrije Universiteit Amsterdam, De Boelelaan 1085, Amsterdam 1081HV, the Netherlands.

MUNC18-1 is an essential protein of the regulated secretion machinery. De novo, heterozygous mutations in STXBP1, the human gene encoding this protein, lead to a severe neurodevelopmental disorder. Here, we describe the electrophysiological characteristics of a unique case of STXBP1-related disorder caused by a homozygous mutation (L446F).

View Article and Find Full Text PDF

Cysteine string protein α (CSPα), also known as DNAJC5, is a member of the DnaJ/Hsp40 family of co-chaperones. The name derives from a cysteine-rich domain, palmitoylation of which enables localization to intracellular membranes, notably neuronal synaptic vesicles. Mutations in the DNAJC5 gene that encodes CSPα cause autosomal dominant, adult-onset neuronal ceroid lipofuscinosis (ANCL), a rare neurodegenerative disease.

View Article and Find Full Text PDF

Reduced dynamin-1 levels in neurons lacking MUNC18-1.

J Cell Sci

November 2022

Depatment of Functional Genomics, Centre for Neurogenomics and Cognitive Research, VU University Amsterdam, 1081 HV Amsterdam, The Netherlands.

Article Synopsis
  • * In Stxbp1 null mutants, dynamin-1 levels drop significantly, and the transcript levels of its encoding gene, Dnm1, are also reduced by 50%, impacting several other endocytic proteins to a lesser degree.
  • * The study indicates that MUNC18-1 does not directly bind dynamin-1, and reducing dynamin-1 alone doesn’t cause neurodegeneration in Stxbp1 mutants, suggesting that MUNC18-1
View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!