Keeton T P, Francis B R, Maaty W S, Bulla L A
Department of Molecular Biology, University of Wyoming, Laramie, Wyoming 82071, USA.
Appl Environ Microbiol. 1998 Jun;64(6):2158-65. doi: 10.1128/AEM.64.6.2158-2165.1998.
The identity of the physiologically important Cry1A receptor protein(s) in the lepidopteran Manduca sexta has been a matter of dispute due to the multiple proteins which bind the Cry1Ac toxin. Cry1Aa, Cry1Ab, and Cry1Ac exhibit essentially identical toxicities toward M. sexta larvae and show a high degree of sequence and presumed structural identities. These similarities make it likely that there is a common mechanism of toxicity in these lepidopteran-specific toxins in terms of both mode of action and the receptor proteins through which these toxins exert their lepidopteran-specific toxicity. Investigators in our laboratory previously demonstrated that the cloned 210-kDa glycoprotein BT-R1 binds all three Cry1A toxins (T. P. Keeton and L. A. Bulla, Jr., Appl. Environ. Microbiol. 63:3419-3425, 1997). This protein remains a common binding protein even after being subjected to various midgut membrane preparation and processing protocols. The method used to isolate proteins from the M. sexta larval midgut in no significant way affects the results of ligand binding and vacuum blotting experiments, and we have been unable to detect specific, high-affinity binding of any Cry1A toxin to Cry1Ac binding proteins other than BT-R1. Alterations in blot substrate and blocking, hybridization, and washing buffers support these conclusions. Collectively, these results indicate that in M. sexta the cadherin-like BT-R1 protein is a common high-affinity receptor protein for the Cry1A family of toxins.
由于存在多种与Cry1Ac毒素结合的蛋白质,鳞翅目烟草天蛾体内具有生理重要性的Cry1A受体蛋白的身份一直存在争议。Cry1Aa、Cry1Ab和Cry1Ac对烟草天蛾幼虫表现出基本相同的毒性,并显示出高度的序列和推测的结构同一性。这些相似性表明,就作用方式和这些毒素发挥其鳞翅目特异性毒性所通过的受体蛋白而言,这些鳞翅目特异性毒素可能存在共同的毒性机制。我们实验室的研究人员先前证明,克隆的210 kDa糖蛋白BT-R1能结合所有三种Cry1A毒素(T. P. Keeton和L. A. Bulla, Jr., Appl. Environ. Microbiol. 63:3419 - 3425, 1997)。即使经过各种中肠膜制备和处理方案,这种蛋白质仍然是一种常见的结合蛋白。从烟草天蛾幼虫中肠分离蛋白质的方法对配体结合和真空印迹实验结果没有显著影响,并且我们无法检测到任何Cry1A毒素与除BT-R1之外的Cry1Ac结合蛋白的特异性、高亲和力结合。印迹底物以及封闭、杂交和洗涤缓冲液的改变支持了这些结论。总体而言,这些结果表明,在烟草天蛾中,类钙黏蛋白BT-R1是Cry1A毒素家族的一种常见高亲和力受体蛋白。