Structural basis for alternative 3' splice site selection in the human spliceosome active center

Journal: bioRxiv
Published Date:

Abstract

Accurate alternative splicing requires discrimination between adjacent 3' splice sites (3'-ss) during catalysis and is disrupted by pathogenic AG-gain mutations that create competing 3'-ss. Here, we present cryo-EM structures of human spliceosomes assembled on native-sequence pre-mRNAs, revealing how the catalytic core controls alternative 3'-ss selection. SDE2 is a previously unrecognized active-center component that promotes a docking-competent spliceosome conformation. Machine learning, in vivo transcriptomics, and in vitro biochemistry show how SDE2 cooperates with FAM32A and Prp18 to act as readers of a cis-regulatory code that governs 3'-ss selection during catalysis. These factors promote weaker, proximal site use by counteracting an intrinsic distal bias generated by active-site interactions with the distal-site -4 nucleotide. Structural or genetic perturbation of these exon-ligation factors destabilizes proximal 3'-ss docking and restores canonical splicing in disease-relevant CFTR and BRCA1 AG-gain alleles. Our work establishes the spliceosome active center as a tunable regulatory hub for alternative splicing.

Authors

  • Marciano
  • G.; Eckert
  • S.; Zuvanonv
  • L.; Miyagawa
  • T.; Yang
  • L.; Datcu
  • G.; Sheng
  • Y.; Kwon
  • H. Y.; Cameron
  • L.; Heyd
  • F. M.; Fica
  • S. M.