Positive selection on ADAM10 builds species recognition in the synchronous spawning coral Acropora
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[1] K. Komrskova,et al. Role of Integrins in Sperm Activation and Fertilization , 2021, International journal of molecular sciences.
[2] M. Tomlinson,et al. Regulation of ADAM10 by the TspanC8 Family of Tetraspanins and Their Therapeutic Potential , 2021, International journal of molecular sciences.
[3] Joshua S Madin,et al. An Indo-Pacific coral spawning database , 2021, Scientific data.
[4] W. Swanson,et al. Molecular mechanisms and evolution of fertilization proteins. , 2020, Journal of experimental zoology. Part B, Molecular and developmental evolution.
[5] H. Lessios,et al. Slow evolution under purifying selection in the gamete recognition protein bindin of the sea urchin Diadema , 2020, Scientific Reports.
[6] J. Jankovičová,et al. Tetraspanins in mammalian reproduction: spermatozoa, oocytes and embryos , 2020, Medical Microbiology and Immunology.
[7] O. Nureki,et al. Structural insights into tetraspanin CD9 function , 2020, Nature Communications.
[8] H. Fukami,et al. Reproductive strategies in the intercrossing corals Acropora donei and A. tenuis to prevent hybridization , 2019, Coral Reefs.
[9] J. Černý,et al. Addressing the Compartmentalization of Specific Integrin Heterodimers in Mouse Sperm , 2019, International journal of molecular sciences.
[10] J. Inoue,et al. ORTHOSCOPE: An Automatic Web Tool for Phylogenetically Inferring Bilaterian Orthogroups with User-Selected Taxa , 2018, Molecular biology and evolution.
[11] E. Perez,et al. Egg CD9 protein tides correlated with sperm oscillations tune the gamete fusion ability in mammal , 2018, Journal of molecular cell biology.
[12] Kazutaka Katoh,et al. MAFFT online service: multiple sequence alignment, interactive sequence choice and visualization , 2017, Briefings Bioinform..
[13] Chaolun Allen Chen,et al. Genetic evidence of peripheral isolation and low diversity in marginal populations of the Acropora hyacinthus complex , 2016, Coral Reefs.
[14] Wolfgang Forstmeier,et al. Fitness Benefits of Mate Choice for Compatibility in a Socially Monogamous Species , 2015, PLoS biology.
[15] A. Schmitt,et al. Membrane transfer from oocyte to sperm occurs in two CD9-independent ways that do not supply the fertilising ability of Cd9-deleted oocytes. , 2012, Reproduction.
[16] M. Okabe,et al. Most fertilizing mouse spermatozoa begin their acrosome reaction before contact with the zona pellucida during in vitro fertilization , 2011, Proceedings of the National Academy of Sciences.
[17] Janice P. Evans,et al. ADAM2 Interactions with Mouse Eggs and Cell Lines Expressing α4/α9 (ITGA4/ITGA9) Integrins: Implications for Integrin-Based Adhesion and Fertilization , 2010, PloS one.
[18] D. Levitan,et al. SIMULTANEOUS POSITIVE AND NEGATIVE FREQUENCY‐DEPENDENT SELECTION ON SPERM BINDIN, A GAMETE RECOGNITION PROTEIN IN THE SEA URCHIN STRONGYLOCENTROTUS PURPURATUS , 2010, Evolution; international journal of organic evolution.
[19] W. Swanson,et al. Coevolution of Interacting Fertilization Proteins , 2009, PLoS genetics.
[20] E. Oh,et al. Reduction of Mouse Egg Surface Integrin Alpha9 Subunit (ITGA9) Reduces the Egg's Ability to Support Sperm-Egg Binding and Fusion1 , 2009, Biology of reproduction.
[21] B. Willis,et al. Systematic and Biogeographical Patterns in the Reproductive Biology of Scleractinian Corals , 2009 .
[22] T. Kondo,et al. The fusing ability of sperm is bestowed by CD9-containing vesicles released from eggs in mice , 2008, Proceedings of the National Academy of Sciences.
[23] D. Hayward,et al. Unexpected diversity of cnidarian integrins: expression during coral gastrulation , 2008, BMC Evolutionary Biology.
[24] Jian-Ping Xiong,et al. Structure and mechanics of integrin-based cell adhesion. , 2007, Current opinion in cell biology.
[25] K. Nadaoka,et al. Temporal changes in settlement, lipid content and lipid composition of larvae of the spawning hermatypic coral Acropora tenuis , 2007 .
[26] A. J. Moore,et al. The hypothesis of reproductive compensation and its assumptions about mate preferences and offspring viability , 2007, Proceedings of the National Academy of Sciences.
[27] M. Bomsel,et al. Alpha6beta1 integrin expressed by sperm is determinant in mouse fertilization , 2007, BMC Developmental Biology.
[28] B. Willis,et al. Apparent Involvement of a β1 Type Integrin in Coral Fertilization , 2007, Marine Biotechnology.
[29] D. Levitan,et al. THE RISK OF POLYSPERMY IN THREE CONGENERIC SEA URCHINS AND ITS IMPLICATIONS FOR GAMETIC INCOMPATIBILITY AND REPRODUCTIVE ISOLATION , 2007, Evolution; international journal of organic evolution.
[30] A. Takemura,et al. Eggs regulate sperm flagellar motility initiation, chemotaxis and inhibition in the coral Acropora digitifera, A. gemmifera and A. tenuis , 2006, Journal of Experimental Biology.
[31] D. Ayre,et al. The Role of Hybridization in the Evolution of Reef Corals , 2006 .
[32] Alexandros Stamatakis,et al. RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models , 2006, Bioinform..
[33] M. Bomsel,et al. CD9 controls the formation of clusters that contain tetraspanins and the integrin α6β1, which are involved in human and mouse gamete fusion , 2006, Journal of Cell Science.
[34] R. Nielsen,et al. Evaluation of an improved branch-site likelihood method for detecting positive selection at the molecular level. , 2005, Molecular biology and evolution.
[35] H. Lessios,et al. SEA URCHIN BINDIN DIVERGENCE PREDICTS GAMETE COMPATIBILITY , 2005, Evolution; international journal of organic evolution.
[36] W. Wong,et al. Bayes empirical bayes inference of amino acid sites under positive selection. , 2005, Molecular biology and evolution.
[37] M. Ensslin,et al. Mammalian fertilization , 2004, Current Biology.
[38] P. Talbot,et al. Perivitelline space: Does it play a role in blocking polyspermy in mammals? , 2003, Microscopy research and technique.
[39] W. Swanson,et al. Positive selection in the egg receptor for abalone sperm lysin , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[40] J. Kreidberg,et al. None of the integrins known to be present on the mouse egg or to be ADAM receptors are essential for sperm-egg binding and fusion. , 2003, Developmental biology.
[41] M. Hatta,et al. Ecological and genetic aspects of reproductive isolation by different spawning times in Acropora corals , 2003 .
[42] W. Swanson,et al. Full-length sequence of VERL, the egg vitelline envelope receptor for abalone sperm lysin. , 2002, Gene.
[43] Janice P. Evans,et al. Analysis of the Roles of RGD-Binding Integrins, α4/α9 Integrins, α6 Integrins, and CD9 in the Interaction of the Fertilin β (ADAM2) Disintegrin Domain with the Mouse Egg Membrane1 , 2002 .
[44] W. Swanson,et al. The rapid evolution of reproductive proteins , 2002, Nature Reviews Genetics.
[45] T. V. Kolesnikova,et al. EWI-2 Is a Major CD9 and CD81 Partner and Member of a Novel Ig Protein Subfamily* , 2001, The Journal of Biological Chemistry.
[46] J. Evans. Fertilin β and other ADAMs as integrin ligands: insights into cell adhesion and fertilization , 2001, Bioessays.
[47] P. Primakoff,et al. Normal Fertilization Occurs with Eggs Lacking the Integrin α6β1 and Is Cd9-Dependent , 2000, The Journal of cell biology.
[48] S. Oda,et al. The gamete fusion process is defective in eggs of Cd9-deficient mice , 2000, Nature Genetics.
[49] N. Knowlton. Molecular genetic analyses of species boundaries in the sea , 2000, Hydrobiologia.
[50] E. Mekada,et al. Requirement of CD9 on the egg plasma membrane for fertilization. , 2000, Science.
[51] M. Hatta,et al. Reproductive and genetic evidence for a reticulate evolutionary history of mass-spawning corals. , 1999, Molecular biology and evolution.
[52] Ziheng Yang,et al. PAML: a program package for phylogenetic analysis by maximum likelihood , 1997, Comput. Appl. Biosci..
[53] R. Schultz,et al. Characterization of the binding of recombinant mouse sperm fertilin alpha subunit to mouse eggs: evidence for function as a cell adhesion molecule in sperm-egg binding. , 1997, Developmental biology.
[54] T. Ota,et al. Positive selection is a general phenomenon in the evolution of abalone sperm lysin. , 1995, Molecular biology and evolution.
[55] V. Vacquier,et al. Abalone sperm lysin: unusual mode of evolution of a gamete recognition protein , 1993, Zygote.
[56] Richard O. Hynes,et al. Integrins: A family of cell surface receptors , 1987, Cell.
[57] Sergei L. Kosakovsky Pond,et al. UC Office of the President Recent Work Title Less Is More : An Adaptive Branch-Site Random Effects Model for Efficient Detection of Episodic Diversifying Selection Permalink , 2015 .
[58] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[59] R. Harrison,et al. Hybridization, Introgression, and the Nature of Species Boundaries. , 2014, The Journal of heredity.
[60] M. MacCoss,et al. ZP domain proteins in the abalone egg coat include a paralog of VERL under positive selection that binds lysin and 18-kDa sperm proteins. , 2010, Molecular biology and evolution.
[61] S. Palumbi. Speciation and the evolution of gamete recognition genes: pattern and process , 2009, Heredity.
[62] R. Nielsen,et al. Pervasive adaptive evolution in mammalian fertilization proteins. , 2003, Molecular biology and evolution.