The generation of energy in mammalian mitochondira is accomplished by a series of oligomeric complexes in the inner membrane. The synthesis and assembly of these complexes requires genetic information ;ontained in both the nuclear and mitochondrial genomes. Limited information is available on the mechanism by which the mitochondrially-encoded components in these complexes are synthesized and assembled into the large oligomeric complexes in the inner membrane. The overall objective of this research is to investigate the mechanism of protein biosynthesis in mammalian mitochondria and its integration into the macromolecular metabolism of this organelle. The first objective is focused on polypeptide chain initiation and is designed to provide an understanding of the roles and mechanism of action of two translational initiation factors required for protein biosynthesis in mammalian mitochondria. Studies will be carried out to examine their binding sites on ribosomes and to investigate their interactions with other components of the protein biosynthetic machinery. In addition, the secondary structure of the RNA near the start sites in mitochondrial mRNAs will be probed. The second major objective focuses on the properties of the translation elongation factor (EF-Tumt) that promotes the binding of aminoacyl-tRNA to the A-site of the ribosome. A collaborative project has been established with the laboratory of Dr. Soren Thirup (Univ. Aarhus, Denmark) to determine the structures of the ternary complex (EF-Tumt:GTP:aa-tRNA) and several other components of the translational cycle in mammalian mitochondria. These structural insights will lay the foundation for understanding the properties of the unusual tRNAs found in mammalian mitochondria. The third major aim of this project is to examine the interaction of the mitochondrial ribosome with the inner membrane. All of the products of mammalian mitochondrial protein biosynthesis are hydrophobic membrane proteins, which are thought to be synthesized while the ribosome is associatedwith the inner membrane. The interaction of the ribosome with the transmembrane protein Oxal will be studied and the paramenters governing the binding of the ribosome to the inner membrane will be investigated. Well over 100 disease states in humans are associated with alterations in mitochondrial function and gene expression. Understanding protein synthesis in this organelle is essential for developing strategies to combat these diseases.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM032734-24
Application #
7596248
Study Section
Molecular Genetics A Study Section (MGA)
Program Officer
Bender, Michael T
Project Start
1984-05-01
Project End
2012-03-31
Budget Start
2009-04-01
Budget End
2012-03-31
Support Year
24
Fiscal Year
2009
Total Cost
$334,177
Indirect Cost
Name
University of North Carolina Chapel Hill
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
608195277
City
Chapel Hill
State
NC
Country
United States
Zip Code
27599
Nallagatla, Subba Rao; Jones, Christie N; Ghosh, Saikat Kumar B et al. (2013) Native tertiary structure and nucleoside modifications suppress tRNA's intrinsic ability to activate the innate immune sensor PKR. PLoS One 8:e57905
Christian, Brooke E; Spremulli, Linda L (2012) Mechanism of protein biosynthesis in mammalian mitochondria. Biochim Biophys Acta 1819:1035-54
Bilbille, Yann; Gustilo, Estella M; Harris, Kimberly A et al. (2011) The human mitochondrial tRNAMet: structure/function relationship of a unique modification in the decoding of unconventional codons. J Mol Biol 406:257-74
Haque, Md Emdadul; Koc, Hasan; Cimen, Huseyin et al. (2011) Contacts between mammalian mitochondrial translational initiation factor 3 and ribosomal proteins in the small subunit. Biochim Biophys Acta 1814:1779-84
Christian, Brooke E; Haque, Md Emdadul; Spremulli, Linda L (2010) The effect of spermine on the initiation of mitochondrial protein synthesis. Biochem Biophys Res Commun 391:942-6
Akama, Kenta; Christian, Brooke E; Jones, Christie N et al. (2010) Analysis of the functional consequences of lethal mutations in mitochondrial translational elongation factors. Biochim Biophys Acta 1802:692-8
Haque, Md Emdadul; Elmore, Kevin B; Tripathy, Ashutosh et al. (2010) Properties of the C-terminal tail of human mitochondrial inner membrane protein Oxa1L and its interactions with mammalian mitochondrial ribosomes. J Biol Chem 285:28353-62
Haque, Md Emdadul; Spremulli, Linda L; Fecko, Christopher J (2010) Identification of protein-protein and protein-ribosome interacting regions of the C-terminal tail of human mitochondrial inner membrane protein Oxa1L. J Biol Chem 285:34991-8
Christian, Brooke E; Spremulli, Linda L (2010) Preferential selection of the 5'-terminal start codon on leaderless mRNAs by mammalian mitochondrial ribosomes. J Biol Chem 285:28379-86
Christian, Brooke E; Spremulli, Linda L (2009) Evidence for an active role of IF3mt in the initiation of translation in mammalian mitochondria. Biochemistry 48:3269-78

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