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Synapse
September 24, 20253 citationsOpen Access

Deep Receptor Scanning Reveals General Sequence Constraints on GPCR Biosynthesis

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ATAustin TedmanMGMuskan GoelSSSohan Shah

Key Points

  • Deep receptor scanning characterizes 766 human GPCRs and 174 splice variants, revealing new insights.
  • Machine learning identifies structural features affecting GPCR expression, improving understanding of signaling.
  • Innovative platform assesses receptor transcript abundance and translational efficiency in a recombinant cell context.
  • Findings may guide pharmacological targeting strategies across the diverse GPCRome landscape.

Abstract

G protein-coupled receptors (GPCRs) mediate a variety of signaling pathways and are the most common pharmacological targets. While advances in structural biochemistry have provided deep functional insights into key receptors, many of the 800+ human GPCRs remain understudied. We introduce a versatile deep receptor scanning platform that can be used to experimentally characterize 766 human GPCRs and 174 known GPCR splice variants in parallel. We use this platform to quantitatively characterize the relative abundance of canonical and alternative receptor transcripts, their translational efficiency, and the plasma membrane expression of each receptor in the context of a recombinant pool of HEK293T cells expressing individual GPCRs. We then employ machine learning to identify specific structural features that modulate GPCR expression. This experimental platform and informatic approach are compatible with a variety of assays and can be used to efficiently explore the biochemical and pharmacological properties of the GPCRome.

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Cite This Study

Tedman et al. (2025) studied this question.

synapsesocial.com/papers/68d6e16f8b2b6861e4c3fe5ehttps://doi.org/10.1101/2025.09.19.677468
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