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家蚕受体结合区域在苏云金芽孢杆菌δ-内毒素上的定位

Location of a Bombyx mori receptor binding region on a Bacillus thuringiensis delta-endotoxin.

作者信息

Lee M K, Milne R E, Ge A Z, Dean D H

机构信息

Department of Biochemistry, Ohio State University, Columbus 43210.

出版信息

J Biol Chem. 1992 Feb 15;267(5):3115-21.

PMID:1310681
Abstract

Receptor binding studies were performed with 125I-labeled trypsin-activated insecticidal toxins, CryIA(a) and CryIA(c), from Bacillus thuringiensis on brush-border membrane vesicles (BBMV) prepared from Bombyx mori larval midgut. Bioassays were performed by gently force feeding B. mori with diluted toxins. CryIA(a) toxin (LD50; 0.002 micrograms) was 200 times more active against B. mori larvae than CryIA(c) toxin (LD50; 0.421 micrograms) and showed high-affinity saturable binding. The Kd and the binding site concentration for CryIA(a) toxin were 3.5 nM and 7.95 pmol/mg, respectively. CryIA(c) toxin (Kd, 50.35 nM; Bmax, 2.85 pmol/mg) did not demonstrate high-affinity binding to B. mori BBMV. Control experiments with CryIA(a) and CryIA(c) toxins revealed no binding to mouse small intestine BBMV and nonspecific binding to pig kidney BBMV. These data provide evidence that binding to a specific receptor on the membrane of midgut epithelial cells is an important determinant with respect to differences in insecticidal spectrum of insecticidal crystal proteins. To locate a B. mori receptor binding region on the CryIA(a) toxin, homologous and heterologous competition binding studies were performed with a set of mutant proteins which had previously been used to define the B. mori "specificity domain" on this toxin (Ge, A. Z., Shivarova, N. I., and Dean, D. H. (1989) Proc. Natl. Acad. Sci. U.S.A. 86, 4037-4041). These mutant proteins have had regions of their genes reciprocally exchanged with the cryIA(c) gene. A B. mori receptor binding region on CryIA(a) toxin includes the amino-terminal portion of the hypervariable region, amino acids 332-450, which is identical to the previously described B. mori specificity determining region. These data provide direct evidence that delta-endotoxins contain a tract of amino acids that comprise a binding region and as a results determines the specificity of a toxin.

摘要

利用125I标记的来自苏云金芽孢杆菌的胰蛋白酶激活的杀虫毒素CryIA(a)和CryIA(c),对家蚕幼虫中肠制备的刷状缘膜囊泡(BBMV)进行了受体结合研究。通过用稀释毒素轻轻强制喂食家蚕进行生物测定。CryIA(a)毒素(LD50;0.002微克)对家蚕幼虫的活性比CryIA(c)毒素(LD50;0.421微克)高200倍,并表现出高亲和力的饱和结合。CryIA(a)毒素的Kd和结合位点浓度分别为3.5 nM和7.95 pmol/mg。CryIA(c)毒素(Kd,50.35 nM;Bmax,2.85 pmol/mg)未表现出与家蚕BBMV的高亲和力结合。用CryIA(a)和CryIA(c)毒素进行的对照实验表明,它们与小鼠小肠BBMV无结合,与猪肾BBMV有非特异性结合。这些数据证明,与中肠上皮细胞膜上的特定受体结合是杀虫晶体蛋白杀虫谱差异的一个重要决定因素。为了定位CryIA(a)毒素上家蚕的受体结合区域,用一组先前用于确定该毒素上家蚕“特异性结构域”的突变蛋白进行了同源和异源竞争结合研究(Ge, A. Z., Shivarova, N. I., and Dean, D. H. (1989) Proc. Natl. Acad. Sci. U.S.A. 86, 4037 - 4041)。这些突变蛋白的基因区域已与cryIA(c)基因相互交换。CryIA(a)毒素上家蚕的受体结合区域包括高变区的氨基末端部分,氨基酸332 - 450,这与先前描述的家蚕特异性决定区域相同。这些数据提供了直接证据,表明δ-内毒素含有一段构成结合区域的氨基酸序列,从而决定了毒素的特异性。

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