PROTEOMICS · 2013 · 38 citations · 42 references
BiologyAllergyBiochemistryToxinologyNatural SciencesMedicineEntomologyImmunologyVenomicsInsect Sting AllergyHoney Bee VenomImmunochemistrySymbiosisProteomicsEuropean Honeybee VenomsHoney BeeAllergic Reactions
Honey bee venom toxins trigger immunological, physiological, and neurological responses within victims. The high occurrence of bee attacks involving potentially fatal toxic and allergic reactions in humans and the prospect of developing novel pharmaceuticals make honey bee venom an attractive target for proteomic studies. Using label-free quantification, we compared the proteome and phosphoproteome of the venom of Africanized honeybees with that of two European subspecies, namely Apis mellifera ligustica and A. m. carnica. From the total of 51 proteins, 42 were common to all three subspecies. Remarkably, the toxins melittin and icarapin were phosphorylated. In all venoms, icarapin was phosphorylated at the (205) Ser residue, which is located in close proximity to its known antigenic site. Melittin, the major toxin of honeybee venoms, was phosphorylated in all venoms at the (10) Thr and (18) Ser residues. (18) Ser phosphorylated melittin-the major of its two phosphorylated forms-was less toxic compared to the native peptide.
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Measurement of protein using bicinchoninic acid
Pam Smith, Randall I. Krohn, Greg T. Hermanson et al. · Analytical Biochemistry · 1985 · 18.2K citations
Global, In Vivo, and Site-Specific Phosphorylation Dynamics in Signaling Networks
Jesper V. Olsen, Blagoy Blagoev, Florian Gnad et al. · Cell · 2006 · 3.5K citations · Full text