The Evolutionarily Conserved Core Design of the Catalytic Activation Step of the Yeast Spliceosome

被引:216
作者
Fabrizio, Patrizia [1 ]
Dannenberg, Julia [1 ]
Dube, Prakash [2 ]
Kastner, Berthold [1 ]
Stark, Holger [2 ,4 ]
Urlaub, Henning [3 ]
Luehrmann, Reinhard [1 ]
机构
[1] Max Planck Inst Biophys Chem, Dept Cellular Biochem, D-37077 Gottingen, Germany
[2] Max Planck Inst Biophys Chem, Electron Cryomicroscopy Grp 3D, D-37077 Gottingen, Germany
[3] Max Planck Inst Biophys Chem, Bioanalyt Mass Spectrometry Grp, D-37077 Gottingen, Germany
[4] Univ Gottingen, Gottingen Ctr Mol Biol, D-37077 Gottingen, Germany
关键词
PRE-MESSENGER-RNA; PROTEIN; COMPLEX; IDENTIFICATION; PRP19; U5; U2; INVOLVEMENT; MECHANISMS; INTERACTS;
D O I
10.1016/j.molcel.2009.09.040
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
Metazoan spliceosomes exhibit an elaborate protein composition required for canonical and alternative splicing. Thus, the minimal set of proteins essential for activation and catalysis remains elusive. We therefore purified in vitro assembled, precatalytic spliceosomal complex B, activated Bact, and step 1 complex C from the simple eukaryote Saccharomyces cerevisiae. Mass spectrometry revealed that yeast spliceosomes contain fewer proteins than metazoans and that each functional stage is very homogeneous. Dramatic compositional changes convert B to Bact, which is composed of similar to 40 evolutionarily conserved proteins that organize the catalytic core. Additional remodeling occurs concomitant with step 1, during which nine proteins are recruited to form complex C. The moderate number of proteins recruited to complex C will allow investigations of the chemical reactions in a fully defined system. Electron microscopy reveals high-quality images of yeast spliceosomes at defined functional stages, indicating that they are well-suited for three-dimensional structure analyses.
引用
收藏
页码:593 / 608
页数:16
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