RNA binding protein with multiple splicing (RBPMS) promotes contractile phenotype splicing in human embryonic stem cell–derived vascular smooth muscle cells
Cardiovascular Research

Abstract
Differentiated vascular smooth muscle cells (VSMCs) express a unique network of mRNA isoforms via smooth muscle–specific alternative pre-mRNA splicing (SM-AS) in functionally critical genes, including those comprising the contractile machinery. We previously described RNA Binding Protein with Multiple Splicing (RBPMS) as a potent driver of differentiated SM-AS in the rat PAC1 VSMC cell line. What is unknown is how RBPMS affects VSMC phenotype and behaviour. Here, we aimed to dissect the role of RBPMS in SM-AS in human cells and determine the impact on VSMC phenotypic properties.
We used human embryonic stem cell–derived VSMCs (hESC-VSMCs) as our platform. hESC-VSMCs are inherently immature, and we found that they display only partially differentiated SM-AS patterns while RBPMS protein levels are low. We found that RBPMS over-expression induces SM-AS patterns in hESC-VSMCs akin to the contractile tissue VSMC splicing patterns. We present
Overall, this study emphasizes a critical role for RBPMS in establishing the contractile phenotype splicing programme of human VSMCs.
Contributors

Aishwarya G Jacob
Author

Ilias Moutsopoulos
Author

Alex Petchey
Author

Rafael Kollyfas
Author

Vincent R Knight-Schrijver
Author

Irina Mohorianu
Author

Sanjay Sinha
Author
University of Cambridge Cambridge , United Kingdom of Great Britain & Northern Ireland

Christopher W J Smith
Author
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