首页> 外文期刊>The Biochemical Journal >Selective inhibition of binding of Bacillus thuringiensis Cry1Ab toxin to cadherin-like and aminopeptidase proteins in brush-border membranes and dissociated epithelial cells from Bombyx mori.
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Selective inhibition of binding of Bacillus thuringiensis Cry1Ab toxin to cadherin-like and aminopeptidase proteins in brush-border membranes and dissociated epithelial cells from Bombyx mori.

机译:苏云金芽孢杆菌Cry1Ab毒素对刷状边界膜和家蚕离体上皮细胞中钙粘蛋白样和氨基肽酶蛋白结合的选择性抑制。

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摘要

Binding analyses with denatured epithelial membrane proteins from Bt (Bacillus thuringiensis) demonstrated at least two kinds of proteins, APNs (aminopeptidases N) and cadherin-like proteins, as possible receptors for the Cry1A class of Bt toxins. Two alternative models have been proposed, both based on initial toxin binding to a cadherin-like protein, but one involving APN and the other not. We have used two Bombyx mori strains (J65 and Kin), which are highly susceptible to Cry1Ab, to study the role of these two types of receptors on Cry1Ab toxin binding and cytotoxicity by means of the inhibitory effect of antibodies. BBMVs (brush-border membrane vesicles) of strain J65 incubated with labelled 125I-Cry1Ab revealed a marked reduction in reversible and irreversible binding when anti-BtR175 (a cadherin-like protein) was used for BBMV pre-treatment. By contrast, the anti-APN1 antibody specifically affected the irreversible binding, while the reversible binding component was not affected. This is the first time that binding of Cry1Ab to APN1 and to a cadherin-like protein from BBMVs in solution has been shown. Dissociated epithelial cells from the Kin strain were used to test the inhibitory effect of the antibodies on the cytotoxicity of Cry1Ab. Pre-incubation of the cells with the anti-BtR175 antibody conferred protection against Cry1Ab, but not the anti-APN1 antibody. Therefore our results seem to support the two models of the mode of action of Cry1Ab in Lepidoptera, depending on whether BBMVs or intact dissociated cells are used, suggesting that both pathways may co-operate for the toxicity of Cry1A toxins in vivo.
机译:与来自Bt(苏云金芽孢杆菌)的变性上皮膜蛋白的结合分析表明,至少两种蛋白,APN(氨基肽酶N)和钙粘蛋白样蛋白,可能是Cry1A类Bt毒素的受体。已经提出了两种替代模型,两者均基于与钙粘蛋白样蛋白结合的初始毒素,但一种涉及APN,而另一种则不涉及。我们已经使用了两个对Cry1Ab高度敏感的家蚕(J65和Kin),通过抗体的抑制作用研究了这两种受体对Cry1Ab毒素结合和细胞毒性的作用。当将抗BtR175(钙粘蛋白样蛋白)用于BBMV预处理时,与标记的125I-Cry1Ab孵育的菌株J65的BBMV(刷状边界膜囊泡)显示出可逆和不可逆结合的显着降低。相比之下,抗APN1抗体特异性影响不可逆结合,而可逆结合成分则不受影响。这是首次证明Cry1Ab与APN1以及溶液中来自BBMV的钙粘蛋白样蛋白结合。使用来自Kin菌株的解离的上皮细胞来测试抗体对Cry1Ab的细胞毒性的抑制作用。用抗BtR175抗体对细胞进行预孵育可赋予其针对Cry1Ab的保护能力,而不是针对抗APN1抗体的保护能力。因此,我们的研究结果似乎支持鳞翅目Cry1Ab作用模式的两种模型,这取决于使用的是BBMV还是完整的离解细胞,表明这两种途径可能共同作用于体内Cry1A毒素的毒性。

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