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Titlebook: Venom Genomics and Proteomics; P. Gopalakrishnakone,Juan J. Calvete Reference work 2016 Springer Science+Business Media Dordrecht 2016 Dru

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Structure-Function Relationship of Modular Domains of P-III Class Snake Venom Metalloproteinases,orrhagic activity of venoms and may also interfere with the hemostatic system. Phylogenetically, SVMPs are most closely related to the mammalian ADAM (a disintegrin and metalloproteinase) protein family, a major class of membrane-bound sheddases. Together with ADAMs and the related ADAMTS (ADAM with
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Snake Venom Phospholipase A2: Evolution and Diversity,ionary events in the snakes’ adaptation and survival. The evolution of vPLA.s is inextricably linked to snake phylogeography, ecology, and natural history. It has been shown that both mammalian secretory PLA.s and snake vPLA.s exist as multiple isoforms. The vPLA. genes undergo duplication, accelera
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Snake Venom Proteopeptidomics: What Lies Behind the Curtain,he last 50 years. Furthermore, a deep knowledge of snake venom protein composition is necessary for better understanding the envenomation physiopathology and to contribute to the broadening in the clinical efficacy and range of antivenom therapy. During the past 15 years, several groups have applied
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Purinergic Mechanisms of Prey Acquisition by Venomous Organisms,t help in the acquisition of prey and its digestion. The venom also serves as a defensive armament in protecting itself against the predators and aggressors. The diverse and synergistically acting cocktail of biologically active molecules of the venoms have been evolved with precise function to inte
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