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Updated: Mar 29, 2026

A Reporter Based Cellular Assay for Monitoring Splicing Efficiency
Published on: September 15, 2021
The Activation-Induced Assembly of an RNA/Protein Interactome Centered on the Splicing Factor U2AF2 Regulates Gene
Thomas C Whisenant1, Eigen R Peralta1, Lauren D Aarreberg1
1Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, California, United States of America.
Abstract:
Activation of CD4 T cells is a reaction to challenges such as microbial pathogens, cancer and toxins that defines adaptive immune responses. The roles of T cell receptor crosslinking, intracellular signaling, and transcription factor activation are well described, but the importance of post-transcriptional regulation by RNA-binding proteins (RBPs) has not been considered in depth. We describe a new model expanding and activating primary human CD4 T cells and applied this to characterizing activation-induced assembly of splicing factors centered on U2AF2. We immunoprecipitated U2AF2 to identify what mRNA transcripts were bound as a function of activation by TCR crosslinking and costimulation. In parallel, mass spectrometry revealed the proteins incorporated into the U2AF2-centered RNA/protein interactome. Molecules that retained interaction with the U2AF2 complex after RNAse treatment were designated as "central" interactome members (CIMs). Mass spectrometry also identified a second class of activation-induced proteins, "peripheral" interactome members (PIMs), that bound to the same transcripts but were not in physical association with U2AF2 or its partners. siRNA knockdown of two CIMs and two PIMs caused changes in activation marker expression, cytokine secretion, and gene expression that were unique to each protein and mapped to pathways associated with key aspects of T cell activation. While knocking down the PIM, SYNCRIP, impacts a limited but immunologically important set of U2AF2-bound transcripts, knockdown of U2AF1 significantly impairs assembly of the majority of protein and mRNA components in the activation-induced interactome. These results demonstrated that CIMs and PIMs, either directly or indirectly through RNA, assembled into activation-induced U2AF2 complexes and play roles in post-transcriptional regulation of genes related to cytokine secretion. These data suggest an additional layer of regulation mediated by the activation-induced assembly of RNA splicing interactomes that is important for understanding T cell activation.
Insights
This study reveals how RNA-binding proteins (RBPs) regulate CD4 T cell activation by forming complexes around U2AF2. These complexes control gene expression, impacting immune responses to pathogens and cancer.
Area of Science:
- Immunology
- Molecular Biology
- Post-transcriptional Regulation
Background:
- Adaptive immune responses rely on CD4 T cell activation, a process traditionally understood through signaling and transcription.
- The role of post-transcriptional regulation by RNA-binding proteins (RBPs) in T cell activation remains underexplored.
Purpose of the Study:
- To investigate the role of RBPs in CD4 T cell activation by characterizing activation-induced protein-RNA complexes.
- To identify key RBPs and their associated transcripts involved in T cell activation.
Main Methods:
- Developed a model for expanding and activating primary human CD4 T cells.
- Utilized U2AF2 immunoprecipitation to identify bound mRNA transcripts upon activation.
- Employed mass spectrometry to identify proteins within the U2AF2-centered RNA/protein interactome, distinguishing central (CIMs) and peripheral (PIMs) interactome members.
- Performed siRNA knockdown experiments to assess the functional impact of CIMs and PIMs on T cell activation markers, cytokine secretion, and gene expression.
Main Results:
- Identified activation-induced assembly of splicing factors centered on U2AF2 in CD4 T cells.
- Discovered distinct classes of proteins (CIMs and PIMs) associating with U2AF2-bound transcripts during activation.
- Demonstrated that knockdown of specific CIMs and PIMs differentially affects T cell activation markers, cytokine secretion, and gene expression.
- Showed that U2AF1 is crucial for the assembly of the U2AF2 interactome, while SYNCRIP impacts a subset of target transcripts.
Conclusions:
- Activation-induced assembly of U2AF2 complexes, including CIMs and PIMs, plays a significant role in the post-transcriptional regulation of genes critical for T cell activation and cytokine secretion.
- These findings highlight a previously underappreciated layer of immune regulation mediated by RNA splicing interactomes during T cell activation.
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