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Dissecting Cell-Autonomous Function of Fragile X Mental Retardation Protein in an Auditory Circuit by In Ovo Electroporation
Published on: July 6, 2022
Fragile X Mental Retardation Protein and Cerebral Expression of Metabotropic Glutamate Receptor Subtype 5 in Men with
James Robert Brašić1, Jack Alexander Goodman2, Ayon Nandi1
1Section of High Resolution Brain Positron Emission Tomography Imaging, Division of Nuclear Medicine and Molecular Imaging, The Russell H. Morgan Department of Radiology and Radiological Science, The Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.
Abstract:
Multiple lines of evidence suggest that a deficiency of Fragile X Mental Retardation Protein (FMRP) mediates dysfunction of the metabotropic glutamate receptor subtype 5 (mGluR5) in the pathogenesis of fragile X syndrome (FXS), the most commonly known single-gene cause of inherited intellectual disability (ID) and autism spectrum disorder (ASD). Nevertheless, animal and human studies regarding the link between FMRP and mGluR5 expression provide inconsistent or conflicting findings about the nature of those relationships. Since multiple clinical trials of glutamatergic agents in humans with FXS did not demonstrate the amelioration of the behavioral phenotype observed in animal models of FXS, we sought measure if mGluR5 expression is increased in men with FXS to form the basis for improved clinical trials. Unexpectedly marked reductions in mGluR5 expression were observed in cortical and subcortical regions in men with FXS. Reduced mGluR5 expression throughout the living brains of men with FXS provides a clue to examine FMRP and mGluR5 expression in FXS. In order to develop the findings of our previous study and to strengthen the objective tools for future clinical trials of glutamatergic agents in FXS, we sought to assess the possible value of measuring both FMRP levels and mGluR5 expression in men with FXS. We aimed to show the value of measurement of FMRP levels and mGluR5 expression for the diagnosis and treatment of individuals with FXS and related conditions. We administered 3-[18F]fluoro-5-(2-pyridinylethynyl)benzonitrile ([18F]FPEB), a specific mGluR5 radioligand for quantitative measurements of the density and the distribution of mGluR5s, to six men with the full mutation (FM) of FXS and to one man with allele size mosaicism for FXS (FXS-M). Utilizing the seven cortical and subcortical regions affected in neurodegenerative disorders as indicator variables, adjusted linear regression of mGluR5 expression and FMRP showed that mGluR5 expression was significantly reduced in the occipital cortex and the thalamus relative to baseline (anterior cingulate cortex) if FMRP levels are held constant (F(7,47) = 6.84, p < 0.001).These findings indicate the usefulness of cerebral mGluR5 expression measured by PET with [18F]FPEB and FMRP values in men with FXS and related conditions for assessments in community facilities within a hundred-mile radius of a production center with a cyclotron. These initial results of this pilot study advance our previous study regarding the measurement of mGluR5 expression by combining both FMRP levels and mGluR5 expression as tools for meaningful clinical trials of glutamatergic agents for men with FXS. We confirm the feasibility of this protocol as a valuable tool to measure FMRP levels and mGluR5 expression in clinical trials of individuals with FXS and related conditions and to provide the foundations to apply precision medicine to tailor treatment plans to the specific needs of individuals with FXS and related conditions.
Insights
Fragile X syndrome (FXS) is linked to intellectual disability and autism. This study found reduced metabotropic glutamate receptor subtype 5 (mGluR5) expression in men with FXS, suggesting new diagnostic and treatment approaches for FXS.
Area of Science:
- Neuroscience
- Genetics
- Radiochemistry
Background:
- Fragile X syndrome (FXS) is a leading genetic cause of intellectual disability and autism spectrum disorder (ASD).
- The Fragile X Mental Retardation Protein (FMRP) is implicated in FXS pathogenesis, with prior research suggesting a link to metabotropic glutamate receptor subtype 5 (mGluR5) dysfunction.
- Existing studies on FMRP and mGluR5 expression in FXS have yielded conflicting results, hindering the development of effective treatments.
Purpose of the Study:
- To investigate mGluR5 expression levels in men with FXS.
- To assess the relationship between FMRP levels and mGluR5 expression in FXS.
- To establish objective biomarkers for diagnosing FXS and guiding clinical trials for glutamatergic agents.
Main Methods:
- Quantitative positron emission tomography (PET) imaging using the specific mGluR5 radioligand [18F]FPEB was performed on six men with the full mutation (FM) of FXS and one man with FXS mosaicism (FXS-M).
- Adjusted linear regression was used to analyze mGluR5 expression in seven cortical and subcortical regions in relation to FMRP levels.
- The study aimed to validate the measurement of FMRP and mGluR5 expression as tools for clinical assessments.
Main Results:
- Contrary to expectations, significantly reduced mGluR5 expression was observed in the occipital cortex and thalamus of men with FXS, even when FMRP levels were constant.
- These reductions were noted across multiple cortical and subcortical regions.
- The study confirmed the feasibility of using [18F]FPEB PET and FMRP measurements in community settings.
Conclusions:
- Reduced cerebral mGluR5 expression is a key finding in men with FXS, challenging previous assumptions.
- Measuring both FMRP levels and mGluR5 expression via PET imaging offers a valuable tool for FXS diagnosis and monitoring.
- This approach supports the development of precision medicine strategies for tailored FXS treatments and improved clinical trial design.
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