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Denaturation of Either Manduca sexta Aminopeptidase N or Bacillus thuringiensis Cry1A Toxins Exposes Binding Epitopes Hidden under Nondenaturing Conditions

机译:曼陀罗六性氨基肽酶N或苏云金芽孢杆菌Cry1A毒素的变性暴露非变性条件下隐藏的结合表位

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摘要

The effect of polypeptide denaturation of Bacillus thuringiensis Cry1A toxins or purified Manduca sexta 120-kDa aminopeptidase N on the specificities of their interactions was investigated. Ligand and dot blotting experiments were conducted with 125I-labeled Cry1Ac, Cry1Ac mutant 509QNR-AAA511 (QNR-AAA), or 120-kDa aminopeptidase N as the probe. Mutant QNR-AAA does not bind the N-acetylgalactosamine moiety on the 120-kDa aminopeptidase. Both 125I-Cry1Ac and 125I-QNR-AAA bound to 210- and 120-kDa proteins from M. sexta brush border membrane vesicles and purified 120-kDa aminopeptidase N on ligand blots. However, on dot blots 125I-QNR-AAA bound brush border vesicles but did not bind purified aminopeptidase except when aminopeptidase was denatured. In the reciprocal experiment, 125I-aminopeptidase bound Cry1Ac but did not bind QNR-AAA. 125I-aminopeptidase bound Cry1Ab to a limited extent but not the Cry1Ab domain I mutant Y153D or Cry1Ca. However, denatured 125I-aminopeptidase detected each Cry1A toxin and mutant but not Cry1Ca on dot blots. The same pattern of recognition occurred with native (nondenatured) 125I-aminopeptidase probe and denatured toxins as the targets. The broader pattern of toxin-binding protein interaction is probably due to peptide sequences being exposed upon denaturation. Putative Cry toxin-binding proteins identified by the ligand blot technique need to be investigated under native conditions early in the process of identifying binding proteins that may serve as functional toxin receptors.
机译:研究了苏云金芽孢杆菌Cry1A毒素或纯化的六倍体曼杜卡120 kDa氨基肽酶N的多肽变性对其相互作用特异性的影响。用125 I标记的Cry1Ac,Cry1Ac突变体509QNR-AAA511(QNR-AAA)或120-kDa氨肽酶N作为探针进行配体和斑点印迹实验。突变体QNR-AAA不结合120-kDa氨肽酶上的N-乙酰半乳糖胺部分。 125I-Cry1Ac和125I-QNR-AAA都与六面体分枝杆菌边缘膜囊泡中的210-kDa和120-kDa蛋白质结合,并在配体印迹上纯化了120-kDa氨基肽酶N.但是,在斑点印迹上,125I-QNR-AAA结合刷状边缘囊泡,但不结合纯化的氨肽酶,除非将氨肽酶变性。在相互实验中,125 I-氨基肽酶结合Cry1Ac,但不结合QNR-AAA。 125 I-氨基肽酶在一定程度上结合了Cry1Ab,但没有结合Cry1Ab域I突变体Y153D或Cry1Ca。但是,变性的125I-氨基肽酶在斑点印迹上检测到每种Cry1A毒素和突变体,但未检测到Cry1Ca。天然(未变性)125I-氨基肽酶探针和变性毒素作为靶标,会发生相同的识别模式。毒素结合蛋白相互作用的更广泛模式可能是由于肽序列在变性时被暴露出来。通过配体印迹技术鉴定的推定的Cry毒素结合蛋白需要在天然条件下早期研究,以鉴定可用作功能性毒素受体的结合蛋白。

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