A spliceosome intermediate with loosely associated tri-snRNP accumulates in the absence of Prp28 ATPase activity

Carsten Boesler(Max Planck Institute for Biophysical Chemistry), Norbert Rigo(Max Planck Institute for Biophysical Chemistry), Maria Anokhina(Max Planck Institute for Biophysical Chemistry), M.J. Tauchert(University of Göttingen), Dmitry E. Agafonov(Max Planck Institute for Biophysical Chemistry), Berthold Kastner(Max Planck Institute for Biophysical Chemistry), Henning Urlaub(Universitätsmedizin Göttingen), Ralf Ficner(University of Göttingen), Cindy L. Will(Max Planck Institute for Biophysical Chemistry), Reinhard Lührmann(Max Planck Institute for Biophysical Chemistry)
Nature Communications
July 5, 2016
Cited by 81Open Access
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Abstract

The precise role of the spliceosomal DEAD-box protein Prp28 in higher eukaryotes remains unclear. We show that stable tri-snRNP association during pre-catalytic spliceosomal B complex formation is blocked by a dominant-negative hPrp28 mutant lacking ATPase activity. Complexes formed in the presence of ATPase-deficient hPrp28 represent a novel assembly intermediate, the pre-B complex, that contains U1, U2 and loosely associated tri-snRNP and is stalled before disruption of the U1/5'ss base pairing interaction, consistent with a role for hPrp28 in the latter. Pre-B and B complexes differ structurally, indicating that stable tri-snRNP integration is accompanied by substantial rearrangements in the spliceosome. Disruption of the U1/5'ss interaction alone is not sufficient to bypass the block by ATPase-deficient hPrp28, suggesting hPrp28 has an additional function at this stage of splicing. Our data provide new insights into the function of Prp28 in higher eukaryotes, and the requirements for stable tri-snRNP binding during B complex formation.


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