Structures of intermediates during RES complex assembly

2015 | journal article. A publication with affiliation to the University of Göttingen.

Jump to: Cite & Linked | Documents & Media | Details | Version history

Cite this publication

​Structures of intermediates during RES complex assembly​
Wysoczanski, P.; Becker, S. & Zweckstetter, M.​ (2015) 
Scientific Reports5 art. 12545​.​ DOI: https://doi.org/10.1038/srep12545 

Documents & Media

srep12545.pdf1.66 MBAdobe PDF

License

Published Version

Attribution 4.0 CC BY 4.0

Details

Authors
Wysoczanski, Piotr; Becker, Stefan; Zweckstetter, Markus
Abstract
The action of the spliceosome depends on the stepwise cooperative assembly and disassembly of its components. Very strong cooperativity was observed for the RES (Retention and Splicing) heterotrimeric complex where the affinity from binary to tertiary interactions changes more than 100-fold and affects RNA binding. The RES complex is involved in splicing regulation and retention of not properly spliced pre-mRNA with its three components-Snu17p, Pml1p and Bud13p-giving rise to the two possible intermediate dimeric complexes Pml1p-Snu17p and Bud13p-Snu17p. Here we determined the three-dimensional structure and dynamics of the Pml1p-Snu17p and Bud13p-Snu17p dimers using liquid state NMR. We demonstrate that localized as well as global changes occur along the RES trimer assembly pathway. The stepwise rigidification of the Snu17p structure following the binding of Pml1p and Bud13p provides a basis for the strong cooperative nature of RES complex assembly.
Issue Date
2015
Status
published
Publisher
Nature Publishing Group
Journal
Scientific Reports 
ISSN
2045-2322

Reference

Citations


Social Media