Literature DB >> 14708576

The evolution of tRNA-Leu genes in animal mitochondrial genomes.

Paul G Higgs1, Daniel Jameson, Howsun Jow, Magnus Rattray.   

Abstract

Animal mitochondrial genomes usually have two transfer RNAs for leucine: one, with anticodon UAG, translates the four-codon family CUN, while the other, with anticodon UAA, translates the two-codon family UUR. These two genes must differ at the third anticodon position, but in some species the genes differ at many additional sites, indicating that these genes have been independent for a long time. Duplication and deletion of genes in mitochondrial genomes occur frequently during the evolution of the Metazoa. If a tRNA-Leu gene were duplicated and a substitution occurred in the anticodon, this would effectively turn one type of tRNA into the other. The original copy of the second tRNA type might then be lost by a deletion elsewhere in the genome. There are several groups of species in which the two tRNA-Leu genes occur next to one another (or very close) on the genome, which suggests that tandem duplication has occurred. Here we use RNA-specific phylogenetic methods to determine evolutionary trees for both genes. We present evidence that the process of duplication, anticodon mutation, and deletion of tRNA-Leu genes has occurred at least five times during the evolution of the metazoa-once in the common ancestor of all protostomes, once in the common ancestor of echinoderms and hemichordates, once in the hermit crab, and twice independently in mollusks.

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Year:  2003        PMID: 14708576     DOI: 10.1007/s00239-003-2494-6

Source DB:  PubMed          Journal:  J Mol Evol        ISSN: 0022-2844            Impact factor:   2.395


  18 in total

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Journal:  Genetics       Date:  1999-12       Impact factor: 4.562

2.  RNA sequence evolution with secondary structure constraints: comparison of substitution rate models using maximum-likelihood methods.

Authors:  N J Savill; D C Hoyle; P G Higgs
Journal:  Genetics       Date:  2001-01       Impact factor: 4.562

Review 3.  Aminoacyl-tRNA synthetases: potential markers of genetic code development.

Authors:  L Ribas de Pouplana; P Schimmel
Journal:  Trends Biochem Sci       Date:  2001-10       Impact factor: 13.807

4.  Compensatory neutral mutations and the evolution of RNA.

Authors:  P G Higgs
Journal:  Genetica       Date:  1998       Impact factor: 1.082

5.  The CLUSTAL_X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools.

Authors:  J D Thompson; T J Gibson; F Plewniak; F Jeanmougin; D G Higgins
Journal:  Nucleic Acids Res       Date:  1997-12-15       Impact factor: 16.971

6.  tRNAscan-SE: a program for improved detection of transfer RNA genes in genomic sequence.

Authors:  T M Lowe; S R Eddy
Journal:  Nucleic Acids Res       Date:  1997-03-01       Impact factor: 16.971

7.  Dramatic mitochondrial gene rearrangements in the hermit crab Pagurus longicarpus (Crustacea, anomura).

Authors:  M J Hickerson; C W Cunningham
Journal:  Mol Biol Evol       Date:  2000-04       Impact factor: 16.240

8.  Partial sequence of the mitochondrial genome of Littorina saxatilis: relevance to gastropod phylogenetics.

Authors:  C S Wilding; P J Mill; J Grahame
Journal:  J Mol Evol       Date:  1999-03       Impact factor: 2.395

9.  Identification of essential domains for Escherichia coli tRNA(leu) aminoacylation and amino acid editing using minimalist RNA molecules.

Authors:  Deana C Larkin; Amy M Williams; Susan A Martinis; George E Fox
Journal:  Nucleic Acids Res       Date:  2002-05-15       Impact factor: 16.971

10.  Duplication and remoulding of tRNA genes during the evolutionary rearrangement of mitochondrial genomes.

Authors:  P Cantatore; M N Gadaleta; M Roberti; C Saccone; A C Wilson
Journal:  Nature       Date:  1987 Oct 29-Nov 4       Impact factor: 49.962

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  20 in total

1.  The relationship between the rate of molecular evolution and the rate of genome rearrangement in animal mitochondrial genomes.

Authors:  Wei Xu; Daniel Jameson; Bin Tang; Paul G Higgs
Journal:  J Mol Evol       Date:  2006-07-12       Impact factor: 2.395

2.  Evolutionary patterns of non-coding RNAs.

Authors:  Athanasius F Bompfünewerer; Christoph Flamm; Claudia Fried; Guido Fritzsch; Ivo L Hofacker; Jörg Lehmann; Kristin Missal; Axel Mosig; Bettina Müller; Sonja J Prohaska; Bärbel M R Stadler; Peter F Stadler; Andrea Tanzer; Stefan Washietl; Christina Witwer
Journal:  Theory Biosci       Date:  2005-04       Impact factor: 1.919

3.  An extensive study of mutation and selection on the wobble nucleotide in tRNA anticodons in fungal mitochondrial genomes.

Authors:  Malisa Carullo; Xuhua Xia
Journal:  J Mol Evol       Date:  2008-04-10       Impact factor: 2.395

4.  The mitochondrial genome of the screamer louse Bothriometopus (phthiraptera: ischnocera): effects of extensive gene rearrangements on the evolution of the genome.

Authors:  Stephen L Cameron; Kevin P Johnson; Michael F Whiting
Journal:  J Mol Evol       Date:  2007-10-10       Impact factor: 2.395

5.  Molecular Profile of the Brazilian Weaver Ant Camponotus textor Forel (Hymenoptera, Formicidae).

Authors:  M O Ramalho; C Martins; L M R Silva; V G Martins; O C Bueno
Journal:  Neotrop Entomol       Date:  2016-04-26       Impact factor: 1.434

6.  Occurrence of three haplotypes of Linepithema micans (Forel) (Hymenoptera: Formicidae) in Southern Brazil.

Authors:  C Martins; A Nondillo; V G Martins; M Botton; O C Bueno
Journal:  Neotrop Entomol       Date:  2012-02-21       Impact factor: 1.434

7.  Genomic organization of eukaryotic tRNAs.

Authors:  Clara Bermudez-Santana; Camille Stephan-Otto Attolini; Toralf Kirsten; Jan Engelhardt; Sonja J Prohaska; Stephan Steigele; Peter F Stadler
Journal:  BMC Genomics       Date:  2010-04-28       Impact factor: 3.969

8.  Mitochondrial genome evolution in fire ants (Hymenoptera: Formicidae).

Authors:  Dietrich Gotzek; Jessica Clarke; DeWayne Shoemaker
Journal:  BMC Evol Biol       Date:  2010-10-07       Impact factor: 3.260

9.  Structure and evolution of the atypical mitochondrial genome of Armadillidium vulgare (Isopoda, Crustacea).

Authors:  Isabelle Marcadé; Richard Cordaux; Vincent Doublet; Catherine Debenest; Didier Bouchon; Roland Raimond
Journal:  J Mol Evol       Date:  2007-09-29       Impact factor: 2.395

10.  Mamit-tRNA, a database of mammalian mitochondrial tRNA primary and secondary structures.

Authors:  Joern Pütz; Bruno Dupuis; Marie Sissler; Catherine Florentz
Journal:  RNA       Date:  2007-06-21       Impact factor: 4.942

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