Modifications of U2 snRNA are required for snRNP assembly and pre-mRNA splicing

被引:210
作者
Yu, YT [1 ]
Shu, MD [1 ]
Steitz, JA [1 ]
机构
[1] Yale Univ, Sch Med, Howard Hughes Med Inst, Boyer Ctr Mol Med,Dept Mol Biophys & Biochem, New Haven, CT 06536 USA
关键词
modification; snRNP biogenesis; splicing; U2; snRNA; Xenopus oocyte;
D O I
10.1093/emboj/17.19.5783
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
Among the spliceosomal snRNAs, U2 has the most extensive modifications, including a 5' trimethyl guanosine (TMG) cap, ten 2'-O-methylated residues and 13 pseudouridines. At short times after injection, cellularly derived (modified) U2 but not synthetic (unmodified) U2 rescues splicing in Xenopus oocytes depleted of endogenous U2 by RNase H targeting. After prolonged reconstitution, synthetic U2 regenerates splicing activity; a correlation between the extent of U2 modification and U2 function in splicing is observed. Moreover, 5-fluorouridine-containing U2 RNA, a potent inhibitor of U2 pseudouridylation, specifically abolishes rescue by synthetic U2, while rescue by cellularly derived U2 is not affected. By creating chimeric U2 molecules in which some sequences are from cellularly derived U2 and others are from in vitro transcribed U2, we demonstrate that the functionally important modifications reside within the 27 nucleotides at the 5' end of U2. We further show that 2'-O-methylation and pseudouridylation activities reside in the nucleus and that the 5' TMG cap is not necessary for internal modification but is crucial for splicing activity. Native gel analysis reveals that unmodified U2 is not incorporated into the spliceosome. Examination of the U2 protein profile and glycerol-gradient analysis argue that U2 modifications directly contribute to conversion of the 12S to the 17S U2 snRNP particle, which is essential for spliceosome assembly.
引用
收藏
页码:5783 / 5795
页数:13
相关论文
共 59 条
[1]   CRYSTAL-STRUCTURE OF UNMODIFIED TRNA(GLN) COMPLEXED WITH GLUTAMINYL-TRANSFER-RNA SYNTHETASE AND ATP SUGGESTS A POSSIBLE ROLE FOR PSEUDO-URIDINES IN STABILIZATION OF RNA STRUCTURE [J].
ARNEZ, JG ;
STEITZ, TA .
BIOCHEMISTRY, 1994, 33 (24) :7560-7567
[2]   SMALL NUCLEAR RIBONUCLEOPROTEIN (RNP)-U2 CONTAINS NUMEROUS ADDITIONAL PROTEINS AND HAS A BIPARTITE RNP STRUCTURE UNDER SPLICING CONDITIONS [J].
BEHRENS, SE ;
TYC, K ;
KASTNER, B ;
REICHELT, J ;
LUHRMANN, R .
MOLECULAR AND CELLULAR BIOLOGY, 1993, 13 (01) :307-319
[3]   Stabilization of RNA stacking by pseudouridine [J].
Davis, DR .
NUCLEIC ACIDS RESEARCH, 1995, 23 (24) :5020-5026
[4]   3'-TERMINAL LABELING OF RNA WITH T4 RNA LIGASE [J].
ENGLAND, TE ;
UHLENBECK, OC .
NATURE, 1978, 275 (5680) :560-561
[5]   INVITRO ASSEMBLY OF YEAST U6 SNRNP - A FUNCTIONAL ASSAY [J].
FABRIZIO, P ;
MCPHEETERS, DS ;
ABELSON, J .
GENES & DEVELOPMENT, 1989, 3 (12B) :2137-2150
[6]   THIOPHOSPHATES IN YEAST U6 SNRNA SPECIFICALLY AFFECT PRE-MESSENGER-RNA SPLICING INVITRO [J].
FABRIZIO, P ;
ABELSON, J .
NUCLEIC ACIDS RESEARCH, 1992, 20 (14) :3659-3664
[7]   2 DOMAINS OF YEAST U6 SMALL NUCLEAR-RNA REQUIRED FOR BOTH STEPS OF NUCLEAR PRECURSOR MESSENGER-RNA SPLICING [J].
FABRIZIO, P ;
ABELSON, J .
SCIENCE, 1990, 250 (4979) :404-409
[8]   DIVERSITY IN THE SIGNALS REQUIRED FOR NUCLEAR ACCUMULATION OF U SNRNPS AND VARIETY IN THE PATHWAYS OF NUCLEAR TRANSPORT [J].
FISCHER, U ;
DARZYNKIEWICZ, E ;
TAHARA, SM ;
DATHAN, NA ;
LUHRMANN, R ;
MATTAJ, IW .
JOURNAL OF CELL BIOLOGY, 1991, 113 (04) :705-714
[9]   The SMN-SIP1 complex has an essential role in spliceosomal snRNP biogenesis [J].
Fischer, U ;
Liu, Q ;
Dreyfuss, G .
CELL, 1997, 90 (06) :1023-1029
[10]   Evidence that sequence-independent binding of highly conserved U2 snRNP proteins upstream of the branch site is required for assembly of spliceosomal complex A [J].
Gozani, O ;
Feld, R ;
Reed, R .
GENES & DEVELOPMENT, 1996, 10 (02) :233-243