Related Experiment Video
Updated: Mar 30, 2026

Studying RNA Interactors of Protein Kinase RNA-Activated during the Mammalian Cell Cycle
Published on: March 5, 2019
Comparison of Equivalence between Two Commercially Available S499-Phosphorylated FMRP Antibodies in Mice
Conner D Reynolds1, Gregory D Smith2, Taylor S Jefferson1
1Department of Psychology and Neuroscience, Baylor University, Waco, Texas, United States of America.
Abstract:
Fragile X syndrome (FXS) develops from excessive trinucleotide CGG repeats in the 5'-untranslated region at Xq27.3 of the Fmr-1 gene, which functionally silences its expression and prevents transcription of its protein. This disorder is the most prominent form of heritable intellectual deficiency, affecting roughly 1 in 5,000 males and 1 in 10,000 females globally. Antibody specificity and selectivity are essential for investigating changes in intracellular protein signaling and phosphorylation status of the Fragile X Mental Retardation Protein (FMRP). Currently, both PhosphoSolutions® and abcam® produce commercially available S499-phosphorylated FMRP specific antibodies. The antibody from PhosphoSolutions® has been validated in previous studies; however, the antibody from abcam® antibody has yet to receive similar validation. This study aims to determine whether these two antibodies are true equivalents through western blot analysis of both NS-Pten knockout (KO) and Fmr-1 KO mice strains. We prepared hippocampal synaptosomal preparations and probed the samples using total FMRP, abcam® phosphorylated FMRP, and PhosphoSolutions® phosphorylated FMRP antibodies. We found that there was a significant increase in phosphorylated FMRP levels using the abcam® and PhosphoSolutions® antibodies in the NS-Pten KO mice compared to wildtype mice. However, there was much more variability using the abcam® antibody. Furthermore, there was a band present in the Fmr-1 KO for the phosphorylated FMRP site using the abcam® antibody for western blotting but not for the PhosphoSolutions® antibody. Our findings strongly suggest that the antibody from abcam® is neither specific nor selective for its advertised targeted substrate, S499-phosphorylated FMRP.
Insights
The abcam® antibody for detecting phosphorylated Fragile X Mental Retardation Protein (FMRP) showed variability and non-specificity in mouse models. PhosphoSolutions® antibody demonstrated greater reliability for FMRP research.
Area of Science:
- Neuroscience
- Genetics
- Biochemistry
Background:
- Fragile X syndrome (FXS) is a leading heritable intellectual disability caused by FMR-1 gene silencing.
- Investigating Fragile X Mental Retardation Protein (FMRP) phosphorylation requires specific antibodies.
- Two commercial antibodies targeting S499-phosphorylated FMRP exist: PhosphoSolutions® and abcam®.
Purpose of the Study:
- To validate the specificity and selectivity of abcam® and PhosphoSolutions® S499-phosphorylated FMRP antibodies.
- To compare antibody performance using western blot analysis in mouse models.
Main Methods:
- Western blot analysis was performed on hippocampal synaptosomal preparations.
- NS-Pten knockout (KO) and Fmr-1 KO mouse strains were utilized.
- Antibodies used included total FMRP, abcam® phosphorylated FMRP, and PhosphoSolutions® phosphorylated FMRP.
Main Results:
- Both abcam® and PhosphoSolutions® antibodies detected increased phosphorylated FMRP in NS-Pten KO mice.
- The abcam® antibody exhibited higher variability and detected a band in Fmr-1 KO mice, unlike the PhosphoSolutions® antibody.
- These results indicate potential non-specificity of the abcam® antibody.
Conclusions:
- The abcam® antibody is likely not specific or selective for S499-phosphorylated FMRP.
- The PhosphoSolutions® antibody appears more reliable for detecting phosphorylated FMRP in research settings.
- Further validation is crucial for antibodies used in FXS research.
More Related Videos
08:55Rab10 Phosphorylation Detection by LRRK2 Activity Using SDS-PAGE with a Phosphate-binding Tag
Published on: December 14, 2017
07:36Combining Multiplex Fluorescence In Situ Hybridization with Fluorescent Immunohistochemistry on Fresh Frozen or Fixed Mouse Brain Sections
Published on: June 25, 2021