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首页> 外文期刊>Applied and Environmental Microbiology >Aminopeptidase N purified from gypsy moth brush border membrane vesicles is a specific receptor for Bacillus thuringiensis CryIAc toxin.
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Aminopeptidase N purified from gypsy moth brush border membrane vesicles is a specific receptor for Bacillus thuringiensis CryIAc toxin.

机译:从吉普赛蛾蛾刷状缘膜囊泡中纯化的氨肽酶N是苏云金芽孢杆菌CryIAc毒素的特异性受体。

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We have evaluated the binding of Bacillus thuringiensis Cry toxins to aminopeptidase N (APN) purified from Lymantria dispar (gypsy moth) brush border membrane vesicle (BBMV). CryIAc toxin bound strongly to APN, while either the structurally related CryIAa and CryIAb toxins or CryIC, CryIIA, and CryIIIA toxins showed weak binding to APN. An in vitro competition binding study demonstrated that the binding of CryIAc to L. dispar BBMV was inhibited by APN. Inhibition of short circuit current for CryIAc, measured by voltage clamping of whole L. dispar midgut, was substantially reduced by addition of phosphatidylinositol-specific phospholipase C, which is known to release APN from the midgut membrane. In contrast, addition of phosphatidylinositol-specific phospholipase C had only a marginal effect on the inhibition of short circuit current for CryIAa. These data suggest that APN is the major functional receptor for CryIAc in L. dispar BBMV. A ligand blotting experiment demonstrated that CryIAc recognized a 120-kDa peptide (APN), while CryIAa and CryIAb recognized a 210-kDa molecule in L. dispar BBMV. In contrast, CryIAa and CryIAb bound to both the 120- and 210-kDa molecules in Manduca sexta BBMV, while CryIAc recognized only the 120-kDa peptide. The 120-kDa peptide (APN) in L. dispar BBMV reacted with soybean agglutinin, indicating that N-acetylgalactosamine is a component of this glycoprotein.
机译:我们已经评估了苏云金芽孢杆菌Cry毒素与从舞毒蛾(吉普赛蛾)刷缘膜囊泡(BBMV)纯化的氨基肽酶N(APN)的结合。 CryIAc毒素与APN牢固结合,而与结构相关的CryIAa和CryIAb毒素或CryIC,CryIIA和CryIIIA毒素与APN的结合弱。一项体外竞争结合研究表明,APN抑制了CryIAc与L. dispar BBMV的结合。通过添加全脂乳杆菌中肠的电压钳制来测量对CryIAc的短路电流的抑制作用,通过添加磷脂酰肌醇特异性磷脂酶C(已知是从中肠膜释放APN)而大大降低。相反,添加磷脂酰肌醇特异性磷脂酶C对抑制CryIAa的短路电流仅具有边际作用。这些数据表明,APN是L. dispar BBMV中CryIAc的主要功能受体。配体印迹实验表明,CryIAc识别了120 kDa肽(APN),而CryIAa和CryIAb识别了Dispar BBMV中的210 kDa分子。相比之下,CryIAa和CryIAb结合于六倍体曼荼罗BBMV中的120 kDa和210 kDa分子,而CryIAc仅识别120 kDa肽。 Dispar BBMV中的120 kDa肽(APN)与大豆凝集素反应,表明N-乙酰半乳糖胺是该糖蛋白的组成部分。

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