1. Structure-Related Differences between Cytochrome Oxidase I Proteins in a Stable Heteroplasmic Mitochondrial System
- Author
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Fabrizio Ghiselli, Angel P. Diz, Jonathan G. L. Mullins, David O. F. Skibinski, Liliana Milani, Skibinski, David O F, Ghiselli, Fabrizio, Diz, Angel P, Milani, Liliana, and Mullins, Jonathan G L
- Subjects
Male ,0301 basic medicine ,Mitochondrial DNA ,Protein Conformation ,Inheritance Patterns ,bivalves ,DNA, Mitochondrial ,Protein Structure, Secondary ,amino acid properties ,bivalve ,Electron Transport Complex IV ,Evolution, Molecular ,Serine ,03 medical and health sciences ,Negative selection ,Adenosine Triphosphate ,Protein structure ,Genetics ,Animals ,Cytochrome c oxidase ,heteroplasmy ,protein structure ,Phylogeny ,Ecology, Evolution, Behavior and Systematics ,Membrane Potential, Mitochondrial ,Alanine ,chemistry.chemical_classification ,biology ,2409 Genética ,mtDNA ,Sequence Analysis, DNA ,doubly uniparental inheritance ,Heteroplasmy ,Bivalvia ,Mitochondria ,Amino acid ,Protein Subunits ,030104 developmental biology ,Amino Acid Substitution ,Biochemistry ,chemistry ,amino acid propertie ,2409.03 Genética de Poblaciones ,biology.protein ,Female ,Research Article - Abstract
Many bivalve species have two types of mitochondrial DNA passed independently through the female line (F genome) and male line (M genome). Here we study the cytochrome oxidase I protein in such bivalve species and provide evidence for differences between the F and M proteins in amino acid property values, particularly relating to hydrophobicity and helicity. The magnitude of these differences varies between different regions of the protein and the change from the ancestor is most marked in the M protein. The observed changes occur in parallel and in the same direction in the different species studied. Two possible causes are considered, first relaxation of purifying selection with drift and second positive selection. These may operate in different ways in different regions of the protein. Many different amino acid substitutions contribute in a small way to the observed variation, but substitutions involving alanine and serine have a quantitatively large effect. Some of these substitutions are potential targets for phosphorylation and some are close to residues of functional importance in the catalytic mechanism. We propose that the observed changes in the F and M proteins might contribute to functional differences between them relating to ATP production and mitochondrial membrane potential with implications for sperm function. Ministerio de Economía y Competitividad | Ref. AGL2014-52062-R Xunta de Galicia | Ref. ED431C 2016-037
- Published
- 2017
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