Carroll J, Wolfersberger M G, Ellar D J
Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, UK.
J Cell Sci. 1997 Dec;110 ( Pt 24):3099-104. doi: 10.1242/jcs.110.24.3099.
Aminopeptidase N purified from whole Manduca sexta midgut binds the Cry1Ac insecticidal toxin from Bacillus thuringiensis and this binding is inhibited by N-acetylgalactosamine (GalNAc). We have examined the membrane permeabilising activity of the Cry1Ac toxin using brush border membrane vesicles (BBMV) prepared from the anterior (A-BBMV) and posterior (P-BBMV) subregions of the M. sexta midgut. A toxin mixing assay demonstrated a faster rate of toxin activity on P-BBMV than on A-BBMV. In the presence of GalNAc this rapid activity on P-BBMV was reduced to the rate seen with A-BBMV. GalNAc had no effect on the rate of A-BBMV permeabilisation by Cry1Ac. Aminopeptidase N assays of A- and P-BBMV demonstrated that this Cry1Ac binding protein is concentrated in the posterior midgut region of M. sexta. It therefore appears that there are two mechanisms by which Cry1Ac permeabilises the M. sexta midgut membrane: a GalNAc-sensitive mechanism restricted to the posterior midgut region, probably involving aminopeptidase N binding, and a previously undetected mechanism found in both the posterior and anterior regions.
从烟草天蛾整个中肠中纯化得到的氨肽酶N可结合苏云金芽孢杆菌的Cry1Ac杀虫毒素,且这种结合会被N-乙酰半乳糖胺(GalNAc)抑制。我们使用从烟草天蛾中肠前部(A-BBMV)和后部(P-BBMV)亚区域制备的刷状缘膜囊泡(BBMV)研究了Cry1Ac毒素的膜通透活性。毒素混合试验表明,毒素对P-BBMV的活性速率比对A-BBMV的更快。在GalNAc存在的情况下,P-BBMV上这种快速活性降低到了A-BBMV所观察到的速率。GalNAc对Cry1Ac引起的A-BBMV通透速率没有影响。对A-BBMV和P-BBMV进行的氨肽酶N检测表明,这种Cry1Ac结合蛋白集中在烟草天蛾中肠的后部区域。因此,似乎Cry1Ac使烟草天蛾中肠膜通透有两种机制:一种是仅限于中肠后部区域的GalNAc敏感机制,可能涉及氨肽酶N结合,另一种是在前部和后部区域均发现的先前未检测到的机制。