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用65kD分枝杆菌热休克蛋白免疫小鼠后诱导产生的抗体的特异性。

Specificity of antibodies induced after immunization of mice with the mycobacterial heat shock protein of 65 kD.

作者信息

Barrios C, Tougne C, Polla B S, Lambert P H, Del Giudice G

机构信息

Department of Pathology, University of Geneva, Switzerland.

出版信息

Clin Exp Immunol. 1994 Nov;98(2):224-8. doi: 10.1111/j.1365-2249.1994.tb06129.x.

Abstract

We have previously shown in mice and monkeys that mycobacterial heat shock proteins (hsp) of 65 and 70 kD exert a strong in vivo helper effect when conjugated to synthetic peptides or bacterial oligosaccharides and given in the absence of any adjuvants. Considering the degree of homology existing in the phylogeny among hsp belonging to the same family, we studied whether antibodies induced in mice with this protocol of immunization with the mycobacterial 65-kD hsp (hsp65) would cross-react, and to what extent, with hsp homologues from other origins, notably with the Escherichia coli GroEL protein and with the human homologue (hsp60). The results obtained show that antibodies to the mycobacterial hsp65 cross-reacted with the E. coli GroEL protein, both in ELISA and Western blot experiments, but not with the human hsp60. In competitive ELISA experiments, the binding of these antibodies to solid-phase hsp65 was very effectively inhibited by low concentrations of the mycobacterial hsp65; however, for human hsp60, 100 times higher concentrations were required in order to obtain similar patterns of inhibition. Finally, murine antibodies to the mycobacterial hsp65 always failed to give positive results in Western blot experiments using extracts of murine cells. Taken together, these data suggest that, after immunization of mice with the mycobacterial hsp65 conjugated to peptides or oligosaccharides in the absence of adjuvants, anti-hsp65 antibodies are induced which cross-react well with hsp homologues from other prokaryotes (e.g. E. coli GroEL), but which weakly bind the human hsp homologue. These results may have implications for the potential use of microbial hsp molecules in the design of conjugated vaccine constructs.

摘要

我们之前在小鼠和猴子中已表明,65kD和70kD的分枝杆菌热休克蛋白(hsp)与合成肽或细菌寡糖偶联且在无任何佐剂的情况下给予时,会产生强大的体内辅助效应。考虑到同一家族的热休克蛋白在系统发育中存在的同源程度,我们研究了用分枝杆菌65-kD热休克蛋白(hsp65)以此免疫方案在小鼠中诱导产生的抗体是否会与其他来源的热休克蛋白同源物发生交叉反应以及交叉反应的程度,特别是与大肠杆菌GroEL蛋白和人类同源物(hsp60)。所得结果表明,在ELISA和蛋白质印迹实验中,针对分枝杆菌hsp65的抗体与大肠杆菌GroEL蛋白发生了交叉反应,但与人类hsp60没有交叉反应。在竞争性ELISA实验中,这些抗体与固相hsp65的结合被低浓度的分枝杆菌hsp65非常有效地抑制;然而,对于人类hsp60,需要高100倍的浓度才能获得类似的抑制模式。最后,针对分枝杆菌hsp65的鼠源抗体在使用鼠细胞提取物的蛋白质印迹实验中始终未能得到阳性结果。综上所述,这些数据表明,在无佐剂的情况下用与肽或寡糖偶联的分枝杆菌hsp65免疫小鼠后,会诱导产生抗hsp65抗体,这些抗体与其他原核生物的热休克蛋白同源物(如大肠杆菌GroEL)有良好的交叉反应,但与人热休克蛋白同源物的结合较弱。这些结果可能对微生物热休克蛋白分子在共轭疫苗构建设计中的潜在应用具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe4a/1534393/510c71084f05/clinexpimmunol00016-0056-a.jpg

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