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重组OspC中His标签的位置及各种佐剂的应用对实验小鼠免疫后特异性抗体反应的强度和质量有影响。

The Position of His-Tag in Recombinant OspC and Application of Various Adjuvants Affects the Intensity and Quality of Specific Antibody Response after Immunization of Experimental Mice.

作者信息

Krupka Michal, Masek Josef, Barkocziova Lucia, Turanek Knotigova Pavlina, Kulich Pavel, Plockova Jana, Lukac Robert, Bartheldyova Eliska, Koudelka Stepan, Chaloupkova Radka, Sebela Marek, Zyka Daniel, Droz Ladislav, Effenberg Roman, Ledvina Miroslav, Miller Andrew D, Turanek Jaroslav, Raska Milan

机构信息

Department of Immunology, Faculty of Medicine and Dentistry, Palacky University Olomouc, Olomouc, Czech Republic.

Department of Pharmacology and Immunotherapy, Veterinary Research Institute, Brno, Czech Republic.

出版信息

PLoS One. 2016 Feb 5;11(2):e0148497. doi: 10.1371/journal.pone.0148497. eCollection 2016.

Abstract

Lyme disease, Borrelia burgdorferi-caused infection, if not recognized and appropriately treated by antibiotics, may lead to chronic complications, thus stressing the need for protective vaccine development. The immune protection is mediated by phagocytic cells and by Borrelia-specific complement-activating antibodies, associated with the Th1 immune response. Surface antigen OspC is involved in Borrelia spreading through the host body. Previously we reported that recombinant histidine tagged (His-tag) OspC (rOspC) could be attached onto liposome surfaces by metallochelation. Here we report that levels of OspC-specific antibodies vary substantially depending upon whether rOspC possesses an N' or C' terminal His-tag. This is the case in mice immunized: (a) with rOspC proteoliposomes containing adjuvants MPLA or non-pyrogenic MDP analogue MT06; (b) with free rOspC and Montanide PET GEL A; (c) with free rOspC and alum; or (d) with adjuvant-free rOspC. Stronger responses are noted with all N'-terminal His-tag rOspC formulations. OspC-specific Th1-type antibodies predominate post-immunization with rOspC proteoliposomes formulated with MPLA or MT06 adjuvants. Further analyses confirmed that the structural features of soluble N' and C' terminal His-tag rOspC and respective rOspC proteoliposomes are similar including their thermal stabilities at physiological temperatures. On the other hand, a change in the position of the rOspC His-tag from N' to C' terminal appears to affect substantially the immunogenicity of rOspC arguably due to steric hindrance of OspC epitopes by the C' terminal His-tag itself and not due to differences in overall conformations induced by changes in the His-tag position in rOspC variants.

摘要

莱姆病是由伯氏疏螺旋体引起的感染,如果不通过抗生素进行识别和适当治疗,可能会导致慢性并发症,因此迫切需要开发保护性疫苗。免疫保护由吞噬细胞和与Th1免疫反应相关的伯氏疏螺旋体特异性补体激活抗体介导。表面抗原OspC参与伯氏疏螺旋体在宿主体内的传播。此前我们报道,重组组氨酸标签(His-tag)OspC(rOspC)可通过金属螯合附着在脂质体表面。在此我们报道,OspC特异性抗体的水平根据rOspC具有N'端还是C'端His标签而有很大差异。在免疫的小鼠中情况如下:(a)用含有佐剂MPLA或无热原性MDP类似物MT06的rOspC蛋白脂质体;(b)用游离rOspC和Montanide PET GEL A;(c)用游离rOspC和明矾;或(d)用无佐剂rOspC。所有N端His标签rOspC制剂均观察到更强的反应。用MPLA或MT06佐剂配制的rOspC蛋白脂质体免疫后,OspC特异性Th1型抗体占主导。进一步分析证实,可溶性N'和C'端His标签rOspC以及各自的rOspC蛋白脂质体的结构特征相似,包括它们在生理温度下的热稳定性。另一方面,rOspC His标签从N'端到C'端位置的变化似乎极大地影响了rOspC的免疫原性,这可以说是由于C'端His标签本身对OspC表位的空间位阻,而不是由于rOspC变体中His标签位置变化引起的整体构象差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e28d/4744052/f2404a50a330/pone.0148497.g001.jpg

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本文引用的文献

1
Chronic Lyme disease: misconceptions and challenges for patient management.
Infect Drug Resist. 2015 May 15;8:119-28. doi: 10.2147/IDR.S66739. eCollection 2015.
3
Chronic Lyme disease.
Infect Dis Clin North Am. 2015 Jun;29(2):325-40. doi: 10.1016/j.idc.2015.02.006.
6
Design and development of a novel vaccine for protection against Lyme borreliosis.
PLoS One. 2014 Nov 19;9(11):e113294. doi: 10.1371/journal.pone.0113294. eCollection 2014.
7
Proteomic analysis of barley cell nuclei purified by flow sorting.
Cytogenet Genome Res. 2014;143(1-3):78-86. doi: 10.1159/000365311. Epub 2014 Jul 22.
9
Updates on Borrelia burgdorferi sensu lato complex with respect to public health.
Ticks Tick Borne Dis. 2011 Sep;2(3):123-8. doi: 10.1016/j.ttbdis.2011.04.002. Epub 2011 May 27.
10
Prevention of lyme disease: promising research or sisyphean task?
Arch Immunol Ther Exp (Warsz). 2011 Aug;59(4):261-75. doi: 10.1007/s00005-011-0128-z. Epub 2011 Jun 3.

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