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为免疫宿主量身定制的抗原折叠的内置 RNA 介导分子伴侣(chaperna)。

Built-in RNA-mediated chaperone (chaperna) for antigen folding tailored to immunized hosts.

机构信息

Department of Biotechnology, College of Life Science and Biotechnology, Yonsei University, Seoul, Republic of Korea.

Department of Biotechnology, The Catholic University of Korea, Bucheon, Republic of Korea.

出版信息

Biotechnol Bioeng. 2020 Jul;117(7):1990-2007. doi: 10.1002/bit.27355. Epub 2020 May 2.

Abstract

High-quality antibody (Ab) production depends on the availability of immunologically relevant antigens. We present a potentially universal platform for generating soluble antigens from bacterial hosts, tailored to immunized animals for Ab production. A novel RNA-dependent chaperone, in which the target antigen is genetically fused with an RNA-interacting domain (RID) docking tag derived from the immunized host, promotes the solubility and robust folding of the target antigen. We selected the N-terminal tRNA-binding domain of lysyl-tRNA synthetase (LysRS) as the RID for fusion with viral proteins and demonstrated the expression of the RID fusion proteins in their soluble and native conformations; immunization predominantly elicited Ab responses to the target antigen, whereas the "self" RID tag remained nonimmunogenic. Differential immunogenicity of the fusion proteins greatly enriched and simplified the screening of hybridoma clones of monoclonal antibodies (mAbs), enabling specific and sensitive serodiagnosis of MERS-CoV infection. Moreover, mAbs against the consensus influenza hemagglutinin stalk domain enabled a novel assay for trivalent seasonal influenza vaccines. The Fc-mediated effector function was demonstrated, which could be harnessed for the design of next-generation "universal" influenza vaccines. The nonimmunogenic built-in antigen folding module tailored to a repertoire of immunized animal hosts will drive immunochemical diagnostics, therapeutics, and designer vaccines.

摘要

高质量的抗体 (Ab) 生产依赖于免疫相关抗原的可用性。我们提出了一种从细菌宿主中生成可溶性抗原的潜在通用平台,该平台针对用于 Ab 生产的免疫动物进行了定制。一种新型的 RNA 依赖性伴侣,其中目标抗原与源自免疫宿主的 RNA 相互作用结构域 (RID) 对接标签进行基因融合,促进了目标抗原的可溶性和稳健折叠。我们选择赖氨酸 -tRNA 合成酶 (LysRS) 的 N 端 tRNA 结合结构域作为 RID 与病毒蛋白融合,并证明了 RID 融合蛋白以可溶性和天然构象表达;免疫主要引发针对目标抗原的 Ab 反应,而“自身”RID 标签保持非免疫原性。融合蛋白的差异化免疫原性极大地丰富和简化了单克隆抗体 (mAb) 杂交瘤克隆的筛选,实现了对 MERS-CoV 感染的特异性和敏感的血清学诊断。此外,针对共识性流感血凝素茎域的 mAb 可用于新型三价季节性流感疫苗的检测。证明了 Fc 介导的效应功能,这可用于设计下一代“通用”流感疫苗。针对免疫动物宿主的免疫库定制的非免疫原性内置抗原折叠模块将推动免疫化学诊断、治疗和设计疫苗的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d76/7262357/37528e3bef95/BIT-117-1990-g008.jpg

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