Characterization of purified human B act spliceosomal complexes reveals compositional and morphological changes during spliceosome activation and first step catalysis

被引:117
作者
Bessonov, Sergey [1 ]
Anokhina, Maria [1 ]
Krasauskas, Andrius [2 ]
Golas, Monika M. [2 ]
Sander, Bjoern [2 ]
Will, Cindy L. [1 ]
Urlaub, Henning [3 ]
Stark, Holger [2 ]
Luehrmann, Reinhard [1 ]
机构
[1] Max Planck Inst Biophys Chem, Dept Cellular Biochem, D-37077 Gottingen, Germany
[2] Max Planck Inst Biophys Chem, Res Grp Electron Cryomicroscopy 3D, D-37077 Gottingen, Germany
[3] Max Planck Inst Biophys Chem, Bioanalyt Mass Spectrometry Grp, D-37077 Gottingen, Germany
关键词
pre-mRNA splicing; spliceosomes; mass spectrometry; electron microscopy; PRE-MESSENGER-RNA; BOX SPLICING FACTOR; PRP19P-ASSOCIATED COMPLEX; ELECTRON-MICROSCOPY; REQUIRES ATP; U4/U6; RNA; PROTEIN; U5; PHOSPHORYLATION; SNRNP;
D O I
10.1261/rna.2456210
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To better understand the compositional and structural dynamics of the human spliceosome during its activation, we set out to isolate spliceosomal complexes formed after precatalytic B but prior to catalytically active C complexes. By shortening the polypyrimidine tract of the PM5 pre- mRNA, which lacks a 3' splice site and 3' exon, we stalled spliceosome assembly at the activation stage. We subsequently affinity purified human B act complexes under the same conditions previously used to isolate B and C complexes, and analyzed their protein composition by mass spectrometry. A comparison of the protein composition of these complexes allowed a fine dissection of compositional changes during the B to B act and B act to C transitions, and comparisons with the Saccharomyces cerevisiae B act complex revealed that the compositional dynamics of the spliceosome during activation are largely conserved between lower and higher eukaryotes. Human SF3b155 and CDC5L were shown to be phosphorylated specifically during the B to B act and B act to C transition, respectively, suggesting these modifications function at these stages of splicing. The two-dimensional structure of the human B act complex was determined by electron microscopy, and a comparison with the B complex revealed that the morphology of the human spliceosome changes significantly during its activation. The overall architecture of the human and S. cerevisiae B act complex is similar, suggesting that many of the higher order interactions among spliceosomal components, as well as their dynamics, are also largely conserved.
引用
收藏
页码:2384 / 2403
页数:20
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