An improved definition of the RNA-binding specificity of SECIS-binding protein 2, an essential component of the selenocysteine incorporation machinery

被引:23
作者
Clery, A.
Bourguignon-Igel, V.
Allmang, C.
Krol, A.
Branlant, C.
机构
[1] Univ Nancy 1, Fac Sci & Techn, CNRS UMR 7567, Lab Maturat ARN & Enzymol Mol, F-54506 Vandoeuvre Les Nancy, France
[2] Univ Strasbourg 1, CNRS, Architecture & ArN, Inst Biol Mol & Cellulaire, F-67084 Strasbourg, France
关键词
D O I
10.1093/nar/gkm066
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
By binding to SECIS elements located in the 3'-UTR of selenoprotein mRNAs, the protein SBP2 plays a key role in the assembly of the selenocysteine incorporation machinery. SBP2 contains an L7Ae/L30 RNA-binding domain similar to that of protein 15.5K/Snu13p, which binds K-turn motifs with a 3-nt bulge loop closed by a tandem of G.A and A.G pairs. Here, by SELEX experiments, we demonstrate the capacity of SBP2 to bind such K-turn motifs with a protruding U residue. However, we show that conversion of the bulge loop into an internal loop reinforces SBP2 affinity and to a greater extent RNP stability. Opposite variations were found for Snu13p. Accordingly, footprinting assays revealed strong contacts of SBP2 with helices I and II and the 5'-strand of the internal loop, as opposed to the loose interaction of Snu13p. Our data also identifies new determinants for SBP2 binding which are located in helix II. Among the L7Ae/L30 family members, these determinants are unique to SBP2. Finally, in accordance with functional data on SECIS elements, the identity of residues at positions 2 and 3 in the loop influences SBP2 affinity. Altogether, the data provide a very precise definition of the SBP2 RNA specificity.
引用
收藏
页码:1868 / 1884
页数:17
相关论文
共 63 条
[1]   A single homozygous point mutation in a 3′ untranslated region motif of selenoprotein N mRNA causes SEPN1-related myopathy [J].
Allamand, V ;
Richard, P ;
Lescure, A ;
Ledeuil, C ;
Desjardin, D ;
Petit, N ;
Gartioux, C ;
Ferreiro, A ;
Krol, A ;
Pellegrini, N ;
Urtizberea, JA ;
Guicheney, P .
EMBO REPORTS, 2006, 7 (04) :450-454
[2]   The SBP2 and 15.5 kD/Snu13p proteins share the same RNA binding domain: Identification of SBP2 amino acids important to SECIS RNA binding [J].
Allmang, C ;
Carbon, P ;
Krol, A .
RNA, 2002, 8 (10) :1308-1318
[3]   Selenoprotein synthesis: UGA does not end the story [J].
Allmang, C. ;
Krol, A. .
BIOCHIMIE, 2006, 88 (11) :1561-1571
[4]   RNA-Guided RNA modification: functional organization of the archaeal H/ACA RNP [J].
Baker, DL ;
Youssef, OA ;
Chastkofsky, MIR ;
Dy, DA ;
Terns, RM ;
Terns, MP .
GENES & DEVELOPMENT, 2005, 19 (10) :1238-1248
[5]   The complete atomic structure of the large ribosomal subunit at 2.4 Å resolution [J].
Ban, N ;
Nissen, P ;
Hansen, J ;
Moore, PB ;
Steitz, TA .
SCIENCE, 2000, 289 (5481) :905-920
[6]   In vitro RNP assembly and methylation guide activity of an unusual box C/D RNA, cis-acting archaeal pre-tRNATrp [J].
Bortolin, ML ;
Bachellerie, JP ;
Clouet-d'Orval, B .
NUCLEIC ACIDS RESEARCH, 2003, 31 (22) :6524-6535
[7]   Joint x-ray and NMR refinement of the yeast L30e-mRNA complex [J].
Chao, JA ;
Williamson, JR .
STRUCTURE, 2004, 12 (07) :1165-1176
[8]   Reconstitution of archaeal H/ACA small ribonucleoprotein complexes active in pseudouridylation [J].
Charpentier, B ;
Muller, S ;
Branlant, C .
NUCLEIC ACIDS RESEARCH, 2005, 33 (10) :3133-3144
[9]   The archaeal sRNA binding protein L7Ae has a 3D structure very similar to that of its eukaryal counterpart while having a broader RNA-binding specificity [J].
Charron, C ;
Manival, X ;
Cléry, A ;
Charpentier, B ;
Marmier-Gourrier, N ;
Branlant, C ;
Aubry, A .
JOURNAL OF MOLECULAR BIOLOGY, 2004, 342 (03) :757-773
[10]   Purification, crystallization and preliminary X-ray diffraction data of L7Ae sRNP core protein from Pyrococcus abyssii [J].
Charron, C ;
Manival, X ;
Charpentier, B ;
Branlant, C ;
Aubry, A .
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 2004, 60 :122-124