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A conformational switch in PRP8 mediates metal ion coordination that promotes pre-mRNA exon ligation.


ABSTRACT: Splicing of pre-mRNAs in eukaryotes is catalyzed by the spliceosome, a large RNA-protein metalloenzyme. The catalytic center of the spliceosome involves a structure comprising the U2 and U6 snRNAs and includes a metal bound by U6 snRNA. The precise architecture of the splicesome active site, however, and the question of whether it includes protein components, remains unresolved. A wealth of evidence places the protein PRP8 at the heart of the spliceosome through assembly and catalysis. Here we provide evidence that the RNase H domain of PRP8 undergoes a conformational switch between the two steps of splicing, rationalizing yeast prp8 alleles that promote either the first or second step. We also show that this switch unmasks a metal-binding site involved in the second step. Together, these data establish that PRP8 is a metalloprotein that promotes exon ligation within the spliceosome.

SUBMITTER: Schellenberg MJ 

PROVIDER: S-EPMC3703396 | biostudies-literature | 2013 Jun

REPOSITORIES: biostudies-literature

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A conformational switch in PRP8 mediates metal ion coordination that promotes pre-mRNA exon ligation.

Schellenberg Matthew J MJ   Wu Tao T   Ritchie Dustin B DB   Fica Sebastian S   Staley Jonathan P JP   Atta Karim A KA   LaPointe Paul P   MacMillan Andrew M AM  

Nature structural & molecular biology 20130519 6


Splicing of pre-mRNAs in eukaryotes is catalyzed by the spliceosome, a large RNA-protein metalloenzyme. The catalytic center of the spliceosome involves a structure comprising the U2 and U6 snRNAs and includes a metal bound by U6 snRNA. The precise architecture of the splicesome active site, however, and the question of whether it includes protein components, remains unresolved. A wealth of evidence places the protein PRP8 at the heart of the spliceosome through assembly and catalysis. Here we p  ...[more]

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