Literature DB >> 12095986

Identification of mammalian mitochondrial translational initiation factor 3 and examination of its role in initiation complex formation with natural mRNAs.

Emine Cavdar Koc1, Linda L Spremulli.   

Abstract

Human mitochondrial translational initiation factor 3 (IF3(mt)) has been identified from the human expressed sequence tag data base. Using consensus sequences derived from conserved regions of the bacterial IF3, several partially sequenced cDNA clones were identified, and the complete sequence was assembled in silico from overlapping clones. IF3(mt) is 278 amino acid residues in length. MitoProt II predicts a 97% probability that this protein will be localized in mitochondria and further predicts that the mature protein will be 247 residues in length. The cDNA for the predicted mature form of IF3(mt) was cloned, and the protein was expressed in Escherichia coli in a His-tagged form. The mature form of IF3(mt) has short extensions on the N and C termini surrounding a region homologous to bacterial IF3. The region of IF3(mt) homologous to prokaryotic factors ranges between 21-26% identical to the bacterial proteins. Purified IF3(mt) promotes initiation complex formation on mitochondrial 55 S ribosomes in the presence of mitochondrial initiation factor 2 (IF2(mt)), [(35)S]fMet-tRNA, and either poly(A,U,G) or an in vitro transcript of the cytochrome oxidase subunit II gene as mRNA. IF3(mt) shifts the equilibrium between the 55 S mitochondrial ribosome and its subunits toward subunit dissociation. In addition, the ability of E. coli initiation factor 1 to stimulate initiation complex formation on E. coli 70 S and mitochondrial 55 S ribosomes was investigated in the presence of IF2(mt) and IF3(mt).

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Year:  2002        PMID: 12095986     DOI: 10.1074/jbc.M202498200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  49 in total

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3.  Contacts between mammalian mitochondrial translational initiation factor 3 and ribosomal proteins in the small subunit.

Authors:  Md Emdadul Haque; Hasan Koc; Huseyin Cimen; Emine C Koc; Linda L Spremulli
Journal:  Biochim Biophys Acta       Date:  2011-10-12

4.  Lack of secondary structure characterizes the 5' ends of mammalian mitochondrial mRNAs.

Authors:  Christie N Jones; Kevin A Wilkinson; Kimberly T Hung; Kevin M Weeks; Linda L Spremulli
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5.  Insertion domain within mammalian mitochondrial translation initiation factor 2 serves the role of eubacterial initiation factor 1.

Authors:  Aymen S Yassin; Md Emdadul Haque; Partha P Datta; Kevin Elmore; Nilesh K Banavali; Linda L Spremulli; Rajendra K Agrawal
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6.  Infantile Progressive Hepatoencephalomyopathy with Combined OXPHOS Deficiency due to Mutations in the Mitochondrial Translation Elongation Factor Gene GFM1.

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Journal:  JIMD Rep       Date:  2011-12-21

7.  Evidence for an active role of IF3mt in the initiation of translation in mammalian mitochondria.

Authors:  Brooke E Christian; Linda L Spremulli
Journal:  Biochemistry       Date:  2009-04-21       Impact factor: 3.162

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Journal:  Hum Mol Genet       Date:  2015-04-24       Impact factor: 6.150

9.  The effect of spermine on the initiation of mitochondrial protein synthesis.

Authors:  Brooke E Christian; Md Emdadul Haque; Linda L Spremulli
Journal:  Biochem Biophys Res Commun       Date:  2009-12-05       Impact factor: 3.575

Review 10.  Mitochondrial translation and beyond: processes implicated in combined oxidative phosphorylation deficiencies.

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Journal:  J Biomed Biotechnol       Date:  2010-04-13
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