Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Technology, Japan.
Tokyo University of Agriculture and Technology, Japan.
Biochim Biophys Acta Proteins Proteom. 2017 Feb;1865(2):220-231. doi: 10.1016/j.bbapap.2016.11.011. Epub 2016 Nov 23.
Information about the receptor-interaction region of Cry toxins, insecticidal proteins produced by Bacillus thuringiensis, is needed to elucidate the mode of action of Cry toxins and improve their toxicity through protein engineering. We analyzed the interaction sites on Cry1Aa with ABC transporter C2 (ABCC2), one of the most important Cry1A toxin receptors. A competitive binding assay revealed that the Bombyx mori ABCC2 (BmABCC2) Cry1A binding site was the same as the BtR175 binding site, suggesting that the loop region of Cry1Aa domain II is a binding site. Next, we constructed several domain II loop mutant toxins and tested their binding affinity in an SPR analysis, and also performed a cell swelling assay to evaluate receptor-mediated cytotoxicity. Our results indicate that the loop regions required for BtR175 and BmABCC2 binding and the regions important for cytotoxicity partially overlap. Our results also suggest that receptor binding is necessary but not sufficient for cytotoxicity. This is the first report showing the region of interaction between ABCC2 and Cry1Aa and the cytotoxicity-relevant properties of the Cry1Aa domain II loop region.
需要了解苏云金芽孢杆菌(Bacillus thuringiensis)产生的 Cry 毒素的受体相互作用区域的信息,以阐明 Cry 毒素的作用模式,并通过蛋白质工程提高其毒性。我们分析了 Cry1Aa 与 ABC 转运蛋白 C2(ABCC2)的相互作用位点,ABCC2 是最重要的 Cry1A 毒素受体之一。竞争性结合测定表明,家蚕 ABCC2(BmABCC2)Cry1A 结合位点与 BtR175 结合位点相同,表明 Cry1Aa 结构域 II 的环区是一个结合位点。接下来,我们构建了几个结构域 II 环突变毒素,并在 SPR 分析中测试了它们的结合亲和力,还进行了细胞肿胀测定以评估受体介导的细胞毒性。我们的结果表明,BtR175 和 BmABCC2 结合所需的环区以及对细胞毒性重要的区域部分重叠。我们的结果还表明,受体结合对于细胞毒性是必要的,但不是充分的。这是首次报道 ABCC2 与 Cry1Aa 之间的相互作用区域以及 Cry1Aa 结构域 II 环区的细胞毒性相关特性。