Mechanistic Insights into Sulfur Relay by Multiple Sulfur Mediators Involved in Thiouridine Biosynthesis at tRNA Wobble Positions

被引:234
作者
Ikeuchi, Y
Shigi, N
Kato, J
Nishimura, A
Suzuki, T
机构
[1] Univ Tokyo, Grad Sch Engn, Dept Chem & Biotechnol, Bunkyo Ku, Tokyo 1138656, Japan
[2] Natl Inst Adv Sci & Technol, Biol Informat Res Ctr, Koto Ku, Tokyo 1350064, Japan
[3] Tokyo Metropolitan Univ, Grad Sch Sci, Dept Biol Sci, Tokyo 1920397, Japan
[4] Natl Inst Genet, Mishima, Shizuoka 4118540, Japan
关键词
D O I
10.1016/j.molcel.2005.11.001
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 wobble bases of bacterial tRNAs responsible for NNR codons are modified to 5-methylaminomethyl-2-thiouridine (mnm(5)s(2)U). 2-thio modification of mnm(5)s(2)U is required for accurate decoding and essential for normal cell growth. We identified five genes yhhP, yheL, yheM, yheN, and yccK(named tusA, tusB, tusC, tusD, and tusE, respectively) that are essential for 2-thiouri-dylation of mnm5s2U by a systematic genome-wide screen ('' ribonucleome analysis ''). Efficient 2-thiouridine formation in vitro was reconstituted with recombinant TusA, a TusBCD complex, TusE, and previously identified IscS and MnmA. The desulfurase activity of IscS is stimulated by TusA binding. IscS transfers the persulfide sulfur to TusA. TusE binds TusBCD complex and stimulates sulfur transfer from TusA to TusD. TusE also interacts with an MnmA-tRNA complex. This study revealed that 2-thiouridine formation proceeds through a complex sulfur-relay system composed of multiple sulfur mediators that select and facilitate specific sulfur flow to 2-thiouridine from various pathways of sulfur trafficking.
引用
收藏
页码:97 / 108
页数:12
相关论文
共 47 条
[1]   BIOLOGICAL FUNCTION OF 2-THIOURIDINE IN ESCHERICHIA-COLI GLUTAMIC-ACID TRANSFER RIBONUCLEIC-ACID [J].
AGRIS, PF ;
SOLL, D ;
SENO, T .
BIOCHEMISTRY, 1973, 12 (22) :4331-4337
[2]   Two proteins that form a complex are required for 7-methylguanosine modification of yeast tRNA [J].
Alexandrov, A ;
Martzen, MR ;
Phizicky, EM .
RNA, 2002, 8 (10) :1253-1266
[3]   Single atom modification (O→S) of tRNA confers ribosome binding [J].
Ashraf, SS ;
Sochacka, E ;
Cain, R ;
Guenther, R ;
Malkiewicz, A ;
Agris, PF .
RNA, 1999, 5 (02) :188-194
[4]   ESCHERICHIA-COLI MUTANT CONTAINING A LARGE DELETION FROM RELA TO ARGA [J].
ATHERLY, AG .
JOURNAL OF BACTERIOLOGY, 1979, 138 (02) :530-534
[5]   The complete genome sequence of Escherichia coli K-12 [J].
Blattner, FR ;
Plunkett, G ;
Bloch, CA ;
Perna, NT ;
Burland, V ;
Riley, M ;
ColladoVides, J ;
Glasner, JD ;
Rode, CK ;
Mayhew, GF ;
Gregor, J ;
Davis, NW ;
Kirkpatrick, HA ;
Goeden, MA ;
Rose, DJ ;
Mau, B ;
Shao, Y .
SCIENCE, 1997, 277 (5331) :1453-+
[6]   A P-LOOP-LIKE MOTH IN A WIDESPREAD ATP PYROPHOSPHATASE DOMAIN - IMPLICATIONS FOR THE EVOLUTION OF SEQUENCE MOTIFS AND ENZYME-ACTIVITY [J].
BORK, P ;
KOONIN, EV .
PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 1994, 20 (04) :347-355
[7]   Solution structure of Pyrobaculum aerophilum DsrC, an archaeal homologue of the gamma subunit of dissimilatory sulfite reductase [J].
Cort, JR ;
Mariappan, SVS ;
Kim, CY ;
Park, MS ;
Peat, TS ;
Waldo, GS ;
Terwilliger, TC ;
Kennedy, MA .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 2001, 268 (22) :5842-5850
[8]  
Crain P. F, 1999, RNA MODIFICATION DAT
[9]   Crystal structure of IscS, a cysteine desulfurase from Escherichia coli [J].
Cupp-Vickery, JR ;
Urbina, H ;
Vickery, LE .
JOURNAL OF MOLECULAR BIOLOGY, 2003, 330 (05) :1049-1059
[10]  
CURRAN JF, 1998, MODIFICATION EDITING, P463