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首页> 外文期刊>Current Microbiology: An International Journal >'Mycoplasmal Antigen Modulation,' a Novel Surface Variation Suggested for a Lipoprotein Specifically Localized on Mycoplasma mobile
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'Mycoplasmal Antigen Modulation,' a Novel Surface Variation Suggested for a Lipoprotein Specifically Localized on Mycoplasma mobile

机译:“支原体抗原调节”,新型表面变异建议脂蛋白专门定位在支原体移动

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摘要

Mycoplasma mobile, a pathogen of freshwater fish, glides easily across surfaces, colonizes on the fish gill, and causes necrosis. The cell surface is differentiated into three parts: the head, neck, and body. Mobile variable surface proteins (Mvsps) localizing at each of these parts may be involved in surface variation including phase variation and antigenic variation, although no proof exists. In this study, we examined this possibility by focusing on MvspI, the largest Mvsp. Immunofluorescence microscopy showed that MvspI is expressed on the surfaces of all cells. When anti-MvspI antibody was added at concentrations over 0.8 nM, MvspI was observed to decrease over time. After 72 h of cultivation with the antibody, the fluorescence intensity and amount of MvspI decreased up to 13 and 39%, respectively, compared to those of cells grown without antibody. These changes were reversed by the removal of the antibody. Such effects were not observed when another antibody targeting other Mvsps was used, suggesting that the decrease is specific to the relationship between MvspI and the antibody. Cell growth was also inhibited by the antibody, but the decrease in MvspI could not be explained by the selective growth of MvspI-negative variants or by the inhibition of growth with other conditions. The decrease in MvspI caused by the antibody binding may suggest a novel type of surface variation, designated here as "mycoplasmal antigen modulation.".
机译:移动支原体是淡水鱼的病原体,很容易在表面上滑动,在鱼g上定居,并引起坏死。细胞表面分为三个部分:头部,颈部和身体。尽管没有证据,但是位于这些部分中每个部分的移动可变表面蛋白(Mvsps)可能参与表面变异,包括相变和抗原变异。在这项研究中,我们通过关注最大的MvspMvspI检验了这种可能性。免疫荧光显微镜检查显示,MvspI在所有细胞表面表达。当以超过0.8 nM的浓度添加抗MvspI抗体时,观察到MvspI随时间下降。与没有抗体生长的细胞相比,在用抗体培养72小时后,MvspI的荧光强度和荧光强度分别降低了13%和39%。通过去除抗体可以逆转这些变化。当使用靶向其他Mvsps的另一种抗体时未观察到这种效果,这表明这种降低对MvspI和抗体之间的关系具有特异性。抗体也抑制细胞生长,但是不能通过MvspI阴性变体的选择性生长或在其他条件下抑制生长来解释MvspI的降低。由抗体结合引起的MvspI的降低可能表明一种新型的表面变化,在此称为“支原体抗原调节”。

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