Structure of the yeast U2/U6 snRNA complex

被引:68
作者
Burke, Jordan E. [1 ]
Sashital, Dipali G. [1 ]
Zuo, Xiaobing [2 ]
Wang, Yun-Xing [3 ]
Butcher, Samuel E. [1 ]
机构
[1] Univ Wisconsin, Dept Biochem, Madison, WI 53706 USA
[2] Argonne Natl Lab, Adv Photon Source, Chicago, IL 60437 USA
[3] NCI, NIH, Frederick, MD 21702 USA
关键词
NMR; RNA; SAXS; U6; snRNA; spliceosome; INTRAMOLECULAR STEM-LOOP; METAL-ION COORDINATION; SMALL NUCLEAR RNAS; MESSENGER-RNA; U6; SNRNA; WEB SERVER; CATALYTIC ACTIVATION; TERTIARY INTERACTION; AGC TRIAD; SPLICEOSOME;
D O I
10.1261/rna.031138.111
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
The U2/U6 snRNA complex is a conserved and essential component of the active spliceosome that interacts with the pre-mRNA substrate and essential protein splicing factors to promote splicing catalysis. Here we have elucidated the solution structure of a 111-nucleotide U2/U6 complex using an approach that integrates SAXS, NMR, and molecular modeling. The U2/U6 structure contains a three-helix junction that forms an extended "Y'' shape. The U6 internal stem-loop (ISL) forms a continuous stack with U2/U6 Helices Ib, Ia, and III. The coaxial stacking of Helix Ib on the U6 ISL is a configuration that is similar to the Domain V structure in group II introns. Interestingly, essential features of the complex-including the U80 metal binding site, AGC triad, and pre-mRNA recognition sites-localize to one face of the molecule. This observation suggests that the U2/U6 structure is well-suited for orienting substrate and cofactors during splicing catalysis.
引用
收藏
页码:673 / 683
页数:11
相关论文
共 72 条
[1]   Dynamics and metal ion binding in the U6 RNA intramolecular stem-loop as analyzed by NMR [J].
Blad, H ;
Reiter, NJ ;
Abildgaard, F ;
Markley, JL ;
Butcher, SE .
JOURNAL OF MOLECULAR BIOLOGY, 2005, 353 (03) :540-555
[2]   Crystallography & NMR system:: A new software suite for macromolecular structure determination [J].
Brunger, AT ;
Adams, PD ;
Clore, GM ;
DeLano, WL ;
Gros, P ;
Grosse-Kunstleve, RW ;
Jiang, JS ;
Kuszewski, J ;
Nilges, M ;
Pannu, NS ;
Read, RJ ;
Rice, LM ;
Simonson, T ;
Warren, GL .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 1998, 54 :905-921
[3]   The spliceosome as ribozyme hypothesis takes a second step [J].
Butcher, Samuel E. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (30) :12211-12212
[4]   Towards understanding the catalytic core structure of the spliceosome [J].
Butcher, SE ;
Brow, DA .
BIOCHEMICAL SOCIETY TRANSACTIONS, 2005, 33 :447-449
[5]   Free energy landscapes of RNA/RNA complexes: With applications to snRNA complexes in spliceosomes [J].
Cao, S ;
Chen, SJ .
JOURNAL OF MOLECULAR BIOLOGY, 2006, 357 (01) :292-312
[6]  
Collins CA, 2000, NAT STRUCT BIOL, V7, P850
[7]   Validation of protein structure from anisotropic carbonyl chemical shifts in a dilute liquid crystalline phase [J].
Cornilescu, G ;
Marquardt, JL ;
Ottiger, M ;
Bax, A .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1998, 120 (27) :6836-6837
[8]   GENETIC-EVIDENCE FOR BASE-PAIRING BETWEEN U2 AND U6 SNRNA IN MAMMALIAN MESSENGER-RNA SPLICING [J].
DATTA, B ;
WEINER, AM .
NATURE, 1991, 352 (6338) :821-824
[9]   Solution structure of a consensus stem-loop D RNA domain that plays important roles in regulating translation and replication in enteroviruses and rhinoviruses [J].
Du, ZH ;
Yu, JH ;
Ulyanov, NB ;
Andino, R ;
James, TL .
BIOCHEMISTRY, 2004, 43 (38) :11959-11972
[10]   Proofreading and spellchecking: A two-tier strategy for pre-mRNA splicing quality control [J].
Egecioglu, Defne E. ;
Chanfreau, Guillaume .
RNA, 2011, 17 (03) :383-389