Fragile X Syndrome

Fragile X syndrome is an inherited genetic disorder and a leading inherited cause of intellectual disability, resulting from changes in the FMR1 gene on the X chromosome. In most cases, expansion of a CGG trinucleotide repeat triggers methylation and silencing of FMR1, reducing production of fragile X messenger ribonucleoprotein, which helps regulate protein synthesis and synaptic development in neurons. Studying Fragile X syndrome connects molecular genetics with neurobiology and provides insight into learning, behavior, and neural circuit function. Genetic testing supports diagnosis and family counseling, while research on FMR1 regulation and synaptic signaling informs potential therapeutic strategies.

Fragile X Syndrome - Related Videos

Research

JoVE Journal - Neuroscience

TMS: Using the Theta-Burst Protocol to Explore Mechanism of Plasticity in Individuals with Fragile X Syndrome and Autism

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Cited by 7 •

2010

In this article, we examine the effects of Theta-Burst TMS stimulation on cortical plasticity in individuals suffering from Fragile X syndrome and individuals on the autistic spectrum.

Capturing Common Fragile Site Breaks by Native γH2A.X ChIP

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2025

We present a rapid and efficient method to detect common fragile site breaks through native γH2A.X chromatin immunoprecipitation (ChIP). This approach significantly reduces both the time and labor associated with traditional γH2A.X ChIP assays while maintaining high reproducibility and reliability of results.

Conscious and Non-conscious Representations of Emotional Faces in Asperger's Syndrome

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Cited by 5 •

2016

An EEG experimental protocol is designed to clarify the interplay between conscious and non-conscious representations of emotional faces in patients with Asperger's syndrome. The technique suggests that patients with Asperger's syndrome have deficits in non-conscious representation of emotional faces, but have comparable performance in conscious representation with healthy controls.

Robotic-assisted Left Pneumonectomy For Vanishing Lung Syndrome

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2026

Robotic-assisted pneumonectomy is safe and effective in the management of Vanishing Lung Syndrome, with reduced morbidity and faster recovery times.

Boldness, Aggression, and Shoaling Assays for Zebrafish Behavioral Syndromes

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Cited by 18 •

2016

This manuscript describes the setup, implementation, and analysis of boldness, aggression, and shoaling in zebrafish and testing for the presence of a behavioral syndrome. A standardized approach for behavioral quantification will allow for easier comparison across studies. Modifications to this protocol are possible as each assay can be run individually.

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