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Abstract

Human spliceosomal U1 small nuclear ribonucleoprotein particles (snRNPs), which consist of U1 small nuclear RNA and ten proteins, recognize the 5' splice site within precursor messenger RNAs and initiate the assembly of the spliceosome for intron excision. An electron density map of the functional core of U1 snRNP at 5.5 Å resolution has enabled us to build the RNA and, in conjunction with site-specific labelling of individual proteins, to place the seven Sm proteins, U1-C and U1-70K into the map. Here we present the detailed structure of a spliceosomal snRNP, revealing a hierarchical network of intricate interactions between subunits. A striking feature is the amino (N)-terminal polypeptide of U1-70K, which extends over a distance of 180 Å from its RNA binding domain, wraps around the core domain consisting of the seven Sm proteins and finally contacts U1-C, which is crucial for 5'-splice-site recognition. The structure of U1 snRNP provides insights into U1 snRNP assembly and suggests a possible mechanism of 5'-splice-site recognition. [PUBLICATION ABSTRACT]

Details

Title
Crystal structure of human spliceosomal U1 snRNP at 5.5 Å resolution
Author
Krummel, Daniel A Pomeranz; Oubridge, Chris; Leung, Adelaine K W; Li, Jade; Nagai, Kiyoshi
Pages
475-80
Section
ARTICLES
Publication year
2009
Publication date
Mar 26, 2009
Publisher
Nature Publishing Group
ISSN
00280836
e-ISSN
14764687
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
204543975
Copyright
Copyright Nature Publishing Group Mar 26, 2009