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Activation Process of Dipteran-Specific Insecticidal Protein Produced by Bacillus thuringiensis subsp. israelensis

机译:苏云金芽孢杆菌亚种产生的二萜特异性杀虫蛋白的活化过程。以色列

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摘要

Dipteran-specific insecticidal protein Cry4A is produced as a protoxin of 130 kDa in Bacillus thuringiensis subsp. israelensis. Here we performed the in vitro processing of Cry4A and showed that the 130-kDa protoxin of Cry4A was processed into the two protease-resistant fragments of 20 and 45 kDa through the intramolecular cleavage of a 60-kDa intermediate. The processing into these two fragments was also observed in vivo. To investigate functional properties of the two fragments, GST (glutathione S-transferase) fusion proteins of the 60-kDa intermediate and the 20- and 45-kDa fragments were constructed. Neither the GST–20-kDa fusion protein (GST-20) nor the GST–45-kDa fusion protein (GST-45) was actively toxic against mosquito larvae of Culex pipiens, whereas the GST–60-kDa intermediate fusion protein (GST-60) exhibited significant toxicity. However, when the two fusion proteins GST-20 and GST-45 coexisted, significant toxicity was observed. The coprecipitation experiment demonstrated that the two fragments associated with each other. Therefore, it is strongly suggested that the two fragments formed an active complex of apparently 60 kDa. A mutant of the 60-kDa protein which was apparently resistant to the intramolecular cleavage with the midgut extract of C. pipiens larvae had toxicity slightly lower than that of GST-60.
机译:Dipteran特异的杀虫蛋白Cry4A在苏云金芽孢杆菌亚种中作为130 kDa的原毒素产生。以色列。在这里,我们进行了Cry4A的体外加工,结果表明Cry4A的130 kDa毒素通过60 kDa中间体的分子内切割加工成两个蛋白酶抗性片段,分别为20和45 kDa。在体内也观察到加工成这两个片段。为了研究这两个片段的功能特性,构建了60-kDa中间体以及20-和45-kDa片段的GST(谷胱甘肽S-转移酶)融合蛋白。 GST-20-kDa融合蛋白(GST-20)和GST-45-kDa融合蛋白(GST-45)都没有对淡色库蚊蚊幼虫的积极毒性,而GST-60-kDa中间融合蛋白(GST) -60)表现出明显的毒性。然而,当两种融合蛋白GST-20和GST-45共存时,观察到明显的毒性。共沉淀实验表明,两个片段相互关联。因此,强烈建议这两个片段形成明显为60kDa的活性复合物。该60-kDa蛋白的突变体显然对用pipiens C.pipiens幼虫的中肠提取物进行的分子内切割具有抗性,其毒性略低于GST-60。

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