Role of the N- and C-terminal extensions on the activity of mammalian mitochondrial translational initiation factor 3

被引:36
作者
Bhargava, K [1 ]
Spremulli, LL [1 ]
机构
[1] Univ N Carolina, Dept Chem, Chapel Hill, NC 27599 USA
关键词
D O I
10.1093/nar/gki1007
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
Mammalian mitochondrial translational initiation factor 3 (IF3(mt)) promotes initiation complex formation on mitochondrial 55S ribosomes in the presence of IF2(mt), fMet-tRNA and poly(A,U,G). The mature form of IF3(mt) is predicted to be 247 residues. Alignment of IF3(mt) with bacterial IF3 indicates that it has a central region with 20-30% identity to the bacterial factors. Both the N- and C-termini of IF3(mt) have extensions of similar to 30 residues compared with bacterial IF3. To examine the role of the extensions on IF3(mt), deletion constructs were prepared in which the N-terminal extension, the C-terminal extension or both extensions were deleted. These truncated derivatives were slightly more active in promoting initiation complex formation than the mature form of IF3(mt). Mitochondrial 28S subunits have the ability to bind fMet-tRNA in the absence of mRNA. IF3(mt) promotes the dissociation of the fMet-tRNA bound in the absence of mRNA. This activity of IF3(mt) requires the C-terminal extension of this factor. Mitochondrial 28S subunits also bind mRNA independently of fMet-tRNA or added initiation factors. IF3(mt) has no effect on the formation of these complexes and cannot dissociate them once formed. These observations have lead to a new model for the function of IF3(mt) in mitochondrial translational initiation.
引用
收藏
页码:7011 / 7018
页数:8
相关论文
共 54 条
[1]   SEQUENCE AND ORGANIZATION OF THE HUMAN MITOCHONDRIAL GENOME [J].
ANDERSON, S ;
BANKIER, AT ;
BARRELL, BG ;
DEBRUIJN, MHL ;
COULSON, AR ;
DROUIN, J ;
EPERON, IC ;
NIERLICH, DP ;
ROE, BA ;
SANGER, F ;
SCHREIER, PH ;
SMITH, AJH ;
STADEN, R ;
YOUNG, IG .
NATURE, 1981, 290 (5806) :457-465
[2]   COMPLETE SEQUENCE OF BOVINE MITOCHONDRIAL-DNA - CONSERVED FEATURES OF THE MAMMALIAN MITOCHONDRIAL GENOME [J].
ANDERSON, S ;
DEBRUIJN, MHL ;
COULSON, AR ;
EPERON, IC ;
SANGER, F ;
YOUNG, IG .
JOURNAL OF MOLECULAR BIOLOGY, 1982, 156 (04) :683-717
[3]  
ANHOLDE K, 1974, RIBOSOMES, P53
[4]  
[Anonymous], STRUCTURE RIBOSOMES
[5]  
BETTS L, 1994, J BIOL CHEM, V269, P26456
[6]   ALTERNATIVE OCCUPANCY OF A DUAL RIBOSOMAL-BINDING SITE BY MESSENGER-RNA AFFECTED BY TRANSLATION INITIATION-FACTORS [J].
CANONACO, MA ;
GUALERZI, CO ;
PON, CL .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1989, 182 (03) :501-506
[7]   6 UNIDENTIFIED READING FRAMES OF HUMAN MITOCHONDRIAL-DNA ENCODE COMPONENTS OF THE RESPIRATORY-CHAIN NADH DEHYDROGENASE [J].
CHOMYN, A ;
MARIOTTINI, P ;
CLEETER, MWJ ;
RAGAN, CI ;
MATSUNOYAGI, A ;
HATEFI, Y ;
DOOLITTLE, RF ;
ATTARDI, G .
NATURE, 1985, 314 (6012) :592-597
[8]   Structure of a bacterial 30S ribosomal subunit at 5.5 Å resolution [J].
Clemons, WM ;
May, JLC ;
Wimberly, BT ;
McCutcheon, JP ;
Capel, MS ;
Ramakrishnan, V .
NATURE, 1999, 400 (6747) :833-840
[9]   Interaction of translation initiation factor 3 with the 30S ribosomal subunit [J].
Dallas, A ;
Noller, HF .
MOLECULAR CELL, 2001, 8 (04) :855-864
[10]   EFFECTS OF INITIATION-FACTORS IF-1 AND IF-3 ON THE DISSOCIATION OF ESCHERICHIA-COLI 70 S RIBOSOMES [J].
DOTTAVIOMARTIN, D ;
SUTTLE, DP ;
RAVEL, JM .
FEBS LETTERS, 1979, 97 (01) :105-110