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家蚕175kDa类钙黏蛋白结合位点在苏云金芽孢杆菌Cry1Aa毒素上的定位

Location of the Bombyx mori 175kDa cadherin-like protein-binding site on Bacillus thuringiensis Cry1Aa toxin.

作者信息

Atsumi Shogo, Inoue Yukino, Ishizaka Takahisa, Mizuno Eri, Yoshizawa Yasutaka, Kitami Madoka, Sato Ryoichi

机构信息

Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Technology, Japan.

出版信息

FEBS J. 2008 Oct;275(19):4913-26. doi: 10.1111/j.1742-4658.2008.06634.x.

Abstract

To identify and gain a better understanding of the cadherin-like receptor-binding site on Bacillus thuringiensis Cry toxins, it is advantageous to use Cry1Aa toxin, because its 3D structure is known. Therefore, Cry1Aa toxin was used to examine the locations of cadherin-like protein-binding sites. Initial experiments examining the binding compatibility for Cry1Aa toxin of partial fragments of recombinant proteins of a 175kDa cadherin-like protein from Bombyx mori (BtR175) and another putative receptor for Cry1Aa toxin, amino peptidaseN1, from Bo.mori (BmAPN1), suggested that their binding sites are close to each other. Of the seven mAbs against Cry1Aa toxin, two mAbs were selected that block the binding site for BtR175 on Cry1Aa toxin: 2A11 and 2F9. Immunoblotting and alignment analyses of four Cry toxins revealed amino acids that included the epitope of mAb 2A11, and suggested that the area on Cry1Aa toxin blocked by the binding of mAb 2A11 is located in the region consisting of loops2 and 3. Two Cry1Aa toxin mutants were constructed by substituting a Cys on the area blocked by the binding of mAb 2A11, and the small blocking molecule, N-(9-acridinyl)maleimide, was introduced at each Cys substitution to determine the BtR175-binding site. Substitution of Tyr445 for Cys had a crippling effect on binding of Cry1Aa toxin to BtR175, suggesting that Tyr445 may be in or close to the BtR175-binding site. Monoclonal antibodies that blocked the binding site for BtR175 on Cry1Aa toxin inhibited the toxicity of Cry1Aa toxin against Bo.mori, indicating that binding of Cry1Aa toxin to BtR175 is essential for the action of Cry1Aa toxin on the insect.

摘要

为了鉴定并更好地理解苏云金芽孢杆菌Cry毒素上类钙黏蛋白受体结合位点,使用Cry1Aa毒素是有利的,因为其三维结构已知。因此,利用Cry1Aa毒素来检测类钙黏蛋白结合位点的位置。最初的实验检测了家蚕175kDa类钙黏蛋白(BtR175)重组蛋白的部分片段以及另一种Cry1Aa毒素假定受体——家蚕氨肽酶N1(BmAPN1)与Cry1Aa毒素的结合兼容性,结果表明它们的结合位点彼此靠近。在针对Cry1Aa毒素的七种单克隆抗体中,选择了两种可阻断BtR175在Cry1Aa毒素上结合位点的单克隆抗体:2A11和2F9。对四种Cry毒素进行免疫印迹和比对分析,发现了包含单克隆抗体2A11表位的氨基酸,并表明单克隆抗体2A11结合所阻断的Cry1Aa毒素区域位于由环2和环3组成的区域。通过替换单克隆抗体2A11结合所阻断区域上的一个半胱氨酸构建了两种Cry1Aa毒素突变体,并在每个半胱氨酸替换位点引入小的阻断分子N-(9-吖啶基)马来酰亚胺以确定BtR175结合位点。将Tyr445替换为半胱氨酸对Cry1Aa毒素与BtR175的结合产生了严重影响,这表明Tyr445可能位于BtR175结合位点内或其附近。阻断Cry1Aa毒素上BtR175结合位点的单克隆抗体抑制了Cry1Aa毒素对家蚕的毒性,这表明Cry1Aa毒素与BtR175的结合对于Cry1Aa毒素对昆虫的作用至关重要。

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