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类风湿因子 Fv 夹的制备与鉴定,一种低亲和力的人源性自身抗体。

Production and characterization of an Fv-clasp of rheumatoid factor, a low-affinity human autoantibody.

机构信息

Department of Biological Science and Technology, Tokyo University of Science, 6-3-1 Niijuku, Katsushika-ku, Tokyo, 125-8585, Japan.

出版信息

J Biochem. 2024 Mar 25;175(4):387-394. doi: 10.1093/jb/mvad112.

Abstract

Rheumatoid factor (RF) is an autoantibody against IgG that affects autoimmune diseases and inhibits the effectiveness of pharmaceuticals and diagnostic agents. Although RFs derived from various germline genes have been identified, little is known about their molecular recognition mechanisms. In this study, the Fv-clasp format was used to prepare YES8c, an RF. We developed an Escherichia coli secretion expression system capable of producing milligram-scale of YES8c Fv-clasp per 1 L of culture. Although YES8c is an autoantibody with very low affinity, the produced Fv-clasp maintained specific binding to IgG. Interestingly, the molecules prepared by E. coli secretion had a higher affinity than those prepared by refolding. In the structure of the YES8c-Fc complex, the N-terminus of the light chain is close to Fc; therefore, it is suggested that the addition of the N-terminal methionine may cause collisions with Fc, resulting in reduced affinity. Our findings suggest that the Fv-clasp, which provides sufficient stability and a high bacterial yield, is a useful format for studying RFs with very low affinity. Furthermore, the Fv-clasp produced from a secretion expression system, which can properly process the N-terminus, would be suitable for analysis of RFs in which the N-terminus may be involved in interactions.

摘要

类风湿因子 (RF) 是一种针对 IgG 的自身抗体,它会影响自身免疫性疾病,并抑制药物和诊断试剂的效果。虽然已经鉴定出源自各种种系基因的 RF,但对于它们的分子识别机制却知之甚少。在本研究中,我们使用 Fv 夹格式来制备 YES8c,这是一种 RF。我们开发了一种大肠杆菌分泌表达系统,能够在每升培养物中产生毫克级的 YES8c Fv 夹。尽管 YES8c 是一种亲和力非常低的自身抗体,但产生的 Fv 夹仍能特异性结合 IgG。有趣的是,通过大肠杆菌分泌制备的分子比通过复性制备的分子具有更高的亲和力。在 YES8c-Fc 复合物的结构中,轻链的 N 端靠近 Fc;因此,添加 N 端甲硫氨酸可能会与 Fc 发生碰撞,导致亲和力降低。我们的研究结果表明,Fv 夹提供了足够的稳定性和高细菌产量,是研究亲和力非常低的 RF 的有用格式。此外,从分泌表达系统产生的 Fv 夹可以正确处理 N 端,这对于分析 N 端可能参与相互作用的 RF 是合适的。

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