Rezende Tatiana Maria Teodoro, Romão Tatiany Patrícia, Batista Michel, Berry Colin, Adang Michael J, Silva-Filha Maria Helena Neves Lobo
Instituto Aggeu Magalhães-FIOCRUZ, Recife, PE, 50740-465, Brazil.
Instituto Carlos Chagas-FIOCRUZ, Curitiba, PR 81350-010, Brazil.
Insect Biochem Mol Biol. 2017 Sep;88:63-70. doi: 10.1016/j.ibmb.2017.08.001. Epub 2017 Aug 3.
A binary mosquitocidal toxin composed of a three-domain Cry-like toxin (Cry48Aa) and a binary-like toxin (Cry49Aa) was identified in Lysinibacillus sphaericus. Cry48Aa/Cry49Aa has action on Culex quinquefasciatus larvae, in particular, to those that are resistant to the Bin Binary toxin, which is the major insecticidal factor from L. sphaericus-based biolarvicides, indicating that Cry48Aa/Cry49Aa interacts with distinct target sites in the midgut and can overcome Bin toxin resistance. This study aimed to identify Cry48Aa/Cry49Aa ligands in C. quinquefasciatus midgut through binding assays and mass spectrometry. Several proteins, mostly from 50 to 120 kDa, bound to the Cry48Aa/Cry49Aa toxin were revealed by toxin overlay and pull-down assays. These proteins were identified against the C. quinquefasciatus genome and after analysis a set of 49 proteins were selected which includes midgut bound proteins such as aminopeptidases, amylases, alkaline phosphatases in addition to molecules from other classes that can be potentially involved in this toxin's mode of action. Among these, some proteins are orthologs of Cry receptors previously identified in mosquito larvae, as candidate receptors for Cry48Aa/Cry49Aa toxin. Further investigation is needed to evaluate the specificity of their interactions and their possible role as receptors.
在球形赖氨酸芽孢杆菌中鉴定出一种由三结构域类Cry毒素(Cry48Aa)和类二元毒素(Cry49Aa)组成的二元杀蚊毒素。Cry48Aa/Cry49Aa对致倦库蚊幼虫有作用,特别是对那些对Bin二元毒素具有抗性的幼虫,Bin二元毒素是基于球形赖氨酸芽孢杆菌的生物杀幼虫剂的主要杀虫因子,这表明Cry48Aa/Cry49Aa与中肠中的不同靶位点相互作用,并且可以克服Bin毒素抗性。本研究旨在通过结合试验和质谱法鉴定致倦库蚊中肠中的Cry48Aa/Cry49Aa配体。毒素覆盖和下拉试验揭示了几种与Cry48Aa/Cry49Aa毒素结合的蛋白质,大部分在50至120 kDa之间。针对致倦库蚊基因组鉴定了这些蛋白质,经过分析,选择了一组49种蛋白质,其中包括中肠结合蛋白,如氨肽酶、淀粉酶、碱性磷酸酶,以及其他可能参与该毒素作用模式的分子类别。其中,一些蛋白质是先前在蚊幼虫中鉴定出的Cry受体的直系同源物,作为Cry48Aa/Cry49Aa毒素的候选受体。需要进一步研究以评估它们相互作用的特异性及其作为受体的可能作用。