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哺乳动物细胞内幽门螺杆菌空泡毒素的荧光共振能量转移显微镜观察

Fluorescence resonance energy transfer microscopy of the Helicobacter pylori vacuolating cytotoxin within mammalian cells.

作者信息

Willhite David C, Ye Dan, Blanke Steven R

机构信息

Department of Biology and Biochemistry, University of Houston, Houston, Texas 77204-5001, USA.

出版信息

Infect Immun. 2002 Jul;70(7):3824-32. doi: 10.1128/IAI.70.7.3824-3832.2002.

Abstract

The Helicobacter pylori vacuolating cytotoxin (VacA) binds and enters mammalian cells to induce cellular vacuolation. To investigate the quaternary structure of VacA within the intracellular environment where toxin cytotoxicity is elaborated, we employed fluorescence resonance energy transfer (FRET) microscopy. HeLa cells coexpressing full-length and truncated forms of VacA fused to cyan fluorescent protein (CFP) or yellow fluorescent protein (YFP) were analyzed for FRET to indicate direct associations. These studies revealed that VacA-CFP and VacA-YFP interact within vacuolated cells, supporting the belief that monomer associations at an intracellular site are important for the toxin's vacuolating activity. In addition, the two fragments of proteolytically nicked VacA, p37 and p58, interact when coexpressed within mammalian cells. Because p37 and p58 function in trans when expressed separately within mammalian cells, these data suggest that the mechanism by which these two fragments induce vacuolation requires direct association. FRET microscopy also demonstrated interactions between mutant forms of VacA, as well as wild-type VacA with mutant forms of the toxin within vacuolated cells. Finally, a dominant-negative form of the toxin directly associates with wild-type VacA in cells where vacuolation was not detectable, suggesting that the formation of complexes comprising wild-type and dominant-negative forms of toxin acts to block intracellular toxin function.

摘要

幽门螺杆菌空泡毒素(VacA)可结合并进入哺乳动物细胞,从而诱导细胞空泡化。为了研究在发挥毒素细胞毒性的细胞内环境中VacA的四级结构,我们采用了荧光共振能量转移(FRET)显微镜技术。对共表达与青色荧光蛋白(CFP)或黄色荧光蛋白(YFP)融合的全长和截短形式VacA的HeLa细胞进行FRET分析,以表明直接关联。这些研究表明,VacA-CFP和VacA-YFP在空泡化细胞内相互作用,这支持了细胞内位点的单体缔合对毒素的空泡化活性很重要这一观点。此外,经蛋白酶切割的VacA的两个片段p37和p58在哺乳动物细胞中共表达时会相互作用。由于p37和p58在哺乳动物细胞中单独表达时可发挥反式作用,这些数据表明这两个片段诱导空泡化的机制需要直接缔合。FRET显微镜技术还证明了空泡化细胞内VacA突变体形式之间以及野生型VacA与毒素突变体形式之间的相互作用。最后,在无法检测到空泡化的细胞中,毒素的显性负性形式与野生型VacA直接缔合,这表明包含毒素野生型和显性负性形式的复合物的形成会阻断细胞内毒素功能。

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