Literature DB >> 9071007

Positive Darwinian selection on two homologous fertilization proteins: what is the selective pressure driving their divergence?

V D Vacquier1, W J Swanson, Y H Lee.   

Abstract

Most examples of positive selection inferred from nucleotide sequence data involve hostpathogen interactions. However, positive selection also promotes the divergence of proteins mediating sperm-egg recognition in marine invertebrates. The abalone spermatozoon has a large acrosomal vesicle containing two proteins of 16 kDa and 18 kDa. Lysin, the 16-kDa protein, exhibits species-specificity in dissolving a hole in the egg vitelline envelope through which the sperm swims to reach the egg plasma membrane. The 18-kDa protein coats the sperm acrosomal process and probably mediates fusion of the two gametes. In this review, we compare sequences of both proteins from five species of California abalones. Both proteins show extensive divergence which has been promoted by positive Darwinian selection. The ratios of nonsynonymous to synonymous nucleotide substitutions may be the highest yet discovered for full-length sequences. Although extensive divergence has occurred, there is conservation of the shape and polarity of residues in both proteins. The two acrosomal proteins arose by a gene duplication followed by their extensive divergence. Five hypotheses are presented which attempt to explain the nature of the unknown selective force responsible for the robust positive selection. The positive selection may, in some unknown way, be related to the establishment of prezygotic barriers to reproduction. Because positive selection promotes the divergence of unrelated, species-specific gamete recognition proteins in both abalones and sea urchins, we predict that positive selection may be a general phenomenon in the evolution of gamete recognition systems in marine invertebrates.

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Year:  1997        PMID: 9071007     DOI: 10.1007/pl00000049

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


  30 in total

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6.  The complete amino acid sequence of vitelline coat lysin.

Authors:  K Haino-Fukushima; H Kasai; T Isobe; M Kimura; T Okuyama
Journal:  Eur J Biochem       Date:  1986-02-03

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Authors:  M A Noor
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8.  The crystal structure of lysin, a fertilization protein.

Authors:  A Shaw; D E McRee; V D Vacquier; C D Stout
Journal:  Science       Date:  1993-12-17       Impact factor: 47.728

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  28 in total

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9.  Nonsynonymous substitution in abalone sperm fertilization genes exceeds substitution in introns and mitochondrial DNA.

Authors:  E C Metz; R Robles-Sikisaka; V D Vacquier
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10.  Adaptive evolution of gamete-recognition proteins in birds.

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