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Avella, I.

Publications and source records attributed to Avella, I..

3 recordsLinked to original sources

Ontogenetic variation in composition and bioactivity of common adder (Vipera berus) venom revealed by genome-guided proteomics and in vitro functional assays

1Ontogenetic shifts in diet are well documented in snakes and are increasingly linked to age-related venom variation. The common adder, Vipera berus, exhibits a dietary transition from predominantly ectothermic prey in its early life to increasingly incorporating endothermic prey as an adult. Here, we investigate whether this dietary shift is reflected in age-related changes in the venom composition and bioactivity of V. berus. Venoms from captive-bred V. berus from Germany were obtained and pooled across five age groups, from neonates to adults. Venom profiles were assessed by SDS-PAGE and genome-guided shotgun proteomics, with quantification based on normalized spectral abundance factors (NSAF) using a toxin-gene catalogue generated from a novel V. berus genome assembly. In parallel, we assayed general protease and PLA2 activities, as well as FXa-, thrombin-, and plasmin-like activities, and cytotoxicity toward mammalian cell lines. We identified two distinct age-related venom phenotypes (ontotypes): an svMP/CTL-rich ontotype A ([≤]1 year) and an svSP/PLA2-rich ontotype B ([≥]2 years). Functionally, protease activity decreased with age, whereas thrombin-like, plasmin-like and PLA2 activities, and cytotoxicity, increased. Our findings indicate an ontogenetic shift in composition and activities of V. berus venom that parallels dietary transitions and potentially reflect adaptation to differing prey physiologies.

biochemistry↗

A genome-guided atlas to the composition, activity, and β-bungarotoxin dimerization in many-banded krait venom inferred by functional venomics

1Snakebite is a neglected tropical disease claiming [~]140,000 lives every year. One of the most medically relevant snakes of Asia is the many-banded krait (Bungarus multicinctus). Approximately 8% of the global human population is at risk of being envenomated by this species, able to cause fatal neurotoxicity. Here, we present a proteogenomic and functional assessment of the B. multicinctus venom via genome-guided bottom-up and top-down proteomics, combined with traditional protein profiling and bioassays. We report its venom profile alongside the primary structures of its toxins, revealing a relatively simple venom containing 55 components from 16 protein families. It is largely composed by three-finger toxins and phospholipase A2, besides acetylcholinesterase and snake venom metalloprotease. Top-down data unveiled the diversity of the highly lethal {beta}-bungarotoxins and allowed us to infer the complex dimerization patterning of these multi-domain neurotoxins. Our functional analysis revealed that B. multicinctus venom exerts potent phospholipase A2 and acetylcholinesterase activities, but protease activity as well as effects on cell viability and release of second messengers were virtually absent. This suggests, that B. multicinctus venom causes its devastating neurotoxic symptoms due to a heavy reliance on phospholipase A2 and acetylcholinesterase, but without impairing viability of neurons nor via interference of second messenger release. Antibacterial and antiviral screens further revealed activity against some pathogenic microbes that warrant further translational investigations. A comparison to previously published venom proteomes of B. multicinctus and its congeners suggests, that intraspecific venom variation occurs more widely in kraits than previously acknowledged and deserves higher attention. Overall, our investigation provides pivotal new insights into the biochemistry and pathophysiology of one of earths most lethal snakes and represents an important resource to inform future proteogenomic and functional studies in krait venom and beyond.

molecular biology↗

Low extent of sex-based venom variation in Earth's most widespread viper, the common adder (Vipera berus)

Snake venom is an ecologically critical functional trait, primarily applied for foraging and accordingly shaped by selective pressures. Recent insights underpinned the high variability of snake venoms down to the intraspecific level, with regional, ontogenetic, and seasonal variation being mostly investigated. In contrast, sex-based venom variation has received considerably less attention so far, and its influence on venom compositions in vipers is virtually unknown. The common adder (Vipera berus) is a promising model species to explore this subject because of a described sexual dimorphism and its wide distribution, which promises a noteworthy degree of adaptability and venom plasticity. Here, we tested for sex-based venom variation in Central European V. berus by comparing venom profiles and bioactivity. Proteomics, paired with SDS-PAGE and RP-HPLC, revealed highly similar venom profiles. Likewise, phospholipases A2 and proteases bioactivity profiling, and bioassays targeting the coagulation cascade and mammalian cell lines revealed similar activity spectra. Hence, our analysis does not show a noteworthy extent of sex-based intraspecific venom variation in V. berus. We further discuss our data in light of the species venom profile at larger geographic scales, its clinical relevance, and the need for more standardized approaches when investigating venom variability. Our work provides novel insights into the venom biology of Earths most widespread viper, and serves as a foundation upon which future works can build.

biochemistry↗