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Rational design of a Kv1.3 channel-blocking antibody as a selective immunosuppressant

机译:Kv1.3通道阻断抗体作为选择性免疫抑制剂的合理设计

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摘要

A variable region fusion strategy was used to generate an immunosuppressive antibody based on a novel “stalk-knob” structural motif in the ultralong complementary-determining region (CDR) of a bovine antibody. The potent Kv1.3 channel inhibitory peptides Moka1-toxin and Vm24-toxin were grafted into different CDRs of the humanized antibodies BVK and Synagis (Syn) using both β-sheet and coiled-coil linkers. Structure-activity relationship efforts led to generation of the fusion protein Syn-Vm24-CDR3L, which demonstrated excellent selectivity and potency against effector human memory T cells (subnanomolar to picomolar EC50 values). This fusion antibody also had significantly improved plasma half-life and serum stability in rodents compared with the parent Vm24 peptide. Finally, this fusion protein showed potent in vivo efficacy in the delayed type hypersensitivity in rats. These results illustrate the utility of antibody CDR fusions as a general and effective strategy to generate long-acting functional antibodies, and may lead to a selective immunosuppressive antibody for the treatment of autoimmune diseases.
机译:基于牛抗体超长互补决定区(CDR)中新的“茎柄”结构基序,使用了可变区融合策略来产生免疫抑制抗体。使用β-折叠和卷曲螺旋接头将有效的Kv1.3通道抑制肽Moka1-毒素和Vm24-毒素移植到人源化抗体BVK和Synagis(Syn)的不同CDR中。构效关系的努力导致了融合蛋白Syn-Vm24-CDR3L的产生,该融合蛋白表现出对效应人记忆T细胞(纳摩尔级至皮摩尔EC50值)的优异选择性和效力。与亲本Vm24肽相比,该融合抗体在啮齿动物中还具有显着改善的血浆半衰期和血清稳定性。最后,这种融合蛋白在大鼠迟发型超敏反应中显示出有效的体内功效。这些结果说明了抗体CDR融合体作为产生长效功能性抗体的一般有效策略的实用性,并可能导致选择性免疫抑制抗体用于自身免疫疾病的治疗。

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