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首页> 外文期刊>Applied and Environmental Microbiology >Different domains of Bacillus thuringiensis delta-endotoxins can bind to insect midgut membrane proteins on ligand blots.
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Different domains of Bacillus thuringiensis delta-endotoxins can bind to insect midgut membrane proteins on ligand blots.

机译:苏云金芽孢杆菌δ-内毒素的不同结构域可以与配体印迹上的昆虫中肠膜蛋白结合。

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We investigated the role of the constituent domains of the CryIA(b) and CryIA(c) delta-endotoxins in binding to midgut epithelial cell membrane proteins of Spodoptera exigua and Manduca sexta on ligand blots. A collection of wild-type and CryIC-CryIA hybrid toxins was used for this purpose. As demonstrated elsewhere (R. A. de Maagd, M. S. G. Kwa, H. van der Klei, T. Yamamoto, B. Schipper, J. M. Vlak, W. J. Stiekema, and D. Bosch, Appl. Environ. Microbiol. 62:1537-1543, 1996), CryIA(b) domain III recognized a 205-kDa protein on S. exigua blots, while no specific binding by domain I or II could be detected. In contrast, on ligand blots of M. sexta proteins CryIA(b) domain II recognized a 210-kDa protein and CryIA(b) domain III recognized a 250-kDa protein. Domain III is responsible for the interaction of CryIA(c) with 120-kDa major binding proteins of both S. exigua and M. sexta. In addition, in M. sexta CryIA(c) also reacts with a 210-kDa binding protein through its domain I and/or domain II. These results show that besides domain II, domain III of delta-endotoxins plays a major role in binding to putative receptors on ligand blots. However, for S. exigua there was no clear correlation between binding of toxins on ligand blots and the in vivo toxicity of the toxins. These and previous results suggest that interactions of insect membrane proteins with both domain II and domain III can occur and that detection of these interactions depends on the type of binding assay used.
机译:我们在配体印迹上研究了CryIA(b)和CryIA(c)δ-内毒素的组成域在与斜纹夜蛾和曼杜卡六倍体中肠上皮细胞膜蛋白结合中的作用。为此使用了野生型和CryIC-CryIA杂合毒素的集合。如在其他地方所证明的(RA de Maagd,MSG Kwa,H。van der Klei,T。Yamamoto,B。Schipper,JM Vlak,WJ Stiekema和D. Bosch,Appl。Environ。Microbiol。62:1537-1543,1996) ,CryIA(b)结构域III在exigua印迹上识别了205-kDa蛋白,而没有检测到结构域I或II的特异性结合。相比之下,在M. sexta蛋白的配体印迹上,CryIA(b)域II识别为210 kDa蛋白,而CryIA(b)域III识别为250 kDa蛋白。域III负责CryIA(c)与S. exigua和M. sexta的120 kDa主要结合蛋白的相互作用。另外,在六面体中,CryIA(c)还通过其结构域I和/或结构域II与210-kDa结合蛋白反应。这些结果表明,除了结构域II外,δ-内毒素的结构域III在与配体印迹上的假定受体结合中也起主要作用。然而,对于S. exigua,毒素在配体印迹上的结合与毒素的体内毒性之间没有明确的相关性。这些和先前的结果表明,昆虫膜蛋白与结构域II和结构域III都可能发生相互作用,并且这些相互作用的检测取决于所用结合试验的类型。

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