首页> 外文期刊>Applied and Environmental Microbiology >Domain III substitution in Bacillus thuringiensis delta-endotoxin CryIA(b) results in superior toxicity for Spodoptera exigua and altered membrane protein recognition.
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Domain III substitution in Bacillus thuringiensis delta-endotoxin CryIA(b) results in superior toxicity for Spodoptera exigua and altered membrane protein recognition.

机译:苏云金芽孢杆菌δ-内毒素CryIA(b)中的域III替代导致对斜纹夜蛾具有更好的毒性,并改变了膜蛋白的识别能力。

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摘要

To test our hypothesis that substitution of domain III of Bacillus thuringiensis delta-endotoxin (Cry) proteins might improve toxicity to pest insects, e.g., Spodoptera exigua, in vivo recombination was used to produce a number of cryIA(b)-cryIC hybrid genes. A rapid screening assay was subsequently exploited to select hybrid genes encoding soluble protoxins. Screening of 120 recombinants yielded two different hybrid genes encoding soluble proteins with domains I and II of CryIA(b) and domain III of CryIC. These proteins differed by only one amino acid residue. Both hybrid protoxins gave a protease-resistant toxin upon in vitro activation by trypsin. Bioassays showed that one of these CryIA(b)-CryIC hybrid proteins (H04) was highly toxic to S. exigua compared with the parental CryIA(b) protein and significantly more toxic than CryIC. In semiquantitative binding studies with biotin-labelled toxins and intact brush border membrane vesicles of S. exigua, this domain III substitution appeared not to affect binding-site specificity. However, binding to a 200-kDa protein by CryIA(b) in preparations of solubilized and blotted brush border membrane vesicle proteins was completely abolished by the domain III substitution. A reciprocal hybrid containing domains I and II of CryIC and domain III of CryIA(b) did bind to the 200-kDa protein, confirming that domain III of CryIA(b) was essential for this reaction. These results show that domain III of CryIC protein plays an important role in the level of toxicity to S. exigua, that substitution of domain III may be a powerful tool to increase the repertoire of available active toxins for pest insects, and that domain III is involved in binding to gut epithelium membrane proteins of S. exigua.
机译:为了检验我们的假设,即苏云金芽孢杆菌δ-内毒素(Cry)蛋白的结构域III的取代可能会提高对害虫的毒性,例如Exodgua exigua,体内重组被用于产生许多cryIA(b)-cryIC杂种基因。随后利用快速筛选测定法来选择编码可溶性毒素的杂合基因。 120个重组体的筛选产生两个不同的杂种基因,其编码具有CryIA(b)的结构域I和II和CryIC的结构域III的可溶性蛋白质。这些蛋白质仅相差一个氨基酸残基。两种杂合毒素均在体外被胰蛋白酶激活后产生了蛋白酶抗性毒素。生物测定法显示,与亲本CryIA(b)蛋白相比,这些CryIA(b)-CryIC杂合蛋白(H04)中的一种对Exigua的毒性高,并且比CryIC具有更高的毒性。在用生物素标记的毒素和完整链球菌的刷状缘膜小泡进行的半定量结合研究中,该结构域III取代似乎不影响结合位点的特异性。但是,在结构域III取代中,CryIA(b)在溶解和印迹的刷状缘膜囊泡蛋白制剂中与200 kDa蛋白的结合被完全消除。包含CryIC的结构域I和II和CryIA(b)的结构域III的可逆杂种确实与200 kDa蛋白结合,从而证实CryIA(b)的结构域III对于该反应至关重要。这些结果表明,CryIC蛋白的结构域III在对沙门氏菌的毒性水平中起着重要作用,结构域III的取代可能是增加害虫昆虫可用活性毒素库的有力工具,而结构域III是参与与S. exigua的肠上皮膜蛋白结合。

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