Anastas Pashov, Ramachandran Murali, Issam Makhoul, Behjatolah Karbassi, Thomas Kieber-Emmons
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They would serve as templates for pan-immunogens inducing biosimilar polyreactive antibodies. In the design, we relied on structural analyses of CMP's enhanced binding to the templates using molecular modeling. Glycan reactivity patterns of affinity CMP-purified human antibodies further refined specificity profiles in comparison with the immune response to the CMP in clinical trials. In this study, we further define the molecular characteristics for this mimicry by considering the polyspecificity of LeY and GD2 reactive antibodies binding to the lacto-ceramide core Galβ(1,4)Glcβ(1-1')Cer. Binding to this minimum building block can be capitalized on for cancer therapy and diagnostics and illustrates a new approach in designing cancer vaccines taking advantage of the latent polyspecificity of antibodies and the relevance of natural antibodies in antigen discovery and design.</p>","PeriodicalId":53514,"journal":{"name":"Monoclonal Antibodies in Immunodiagnosis and Immunotherapy","volume":"41 5","pages":"290-300"},"PeriodicalIF":0.0000,"publicationDate":"2022-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Harnessing Antibody Polyspecificity for Cancer Immunotherapy.\",\"authors\":\"Anastas Pashov, Ramachandran Murali, Issam Makhoul, Behjatolah Karbassi, Thomas Kieber-Emmons\",\"doi\":\"10.1089/mab.2022.0025\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Targeting the diverse glycan repertoire expressed on tumor cells is considered a viable therapeutic strategy to deal with tumor cell heterogeneity. 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引用次数: 0
摘要
靶向肿瘤细胞上表达的多种聚糖库被认为是解决肿瘤细胞异质性的可行治疗策略。固有的多特异性、天然的聚糖反应性抗体被认为在阻止感染和癌症免疫治疗中具有保护作用。肿瘤相关碳水化合物抗原(TACAs)与病原体聚糖有关,其存在新生或天然抗体,并引发IgM反应。为了捕捉抗碳水化合物反应的多特异性,我们重点研究了碳水化合物模拟肽(CMPs)与TACA反应性抗体交叉反应的合理设计。特别是,我们专注于开发对GD2和Lewis Y (LeY)反应性单克隆抗体具有反应性的cmp。它们可作为泛免疫原诱导生物类似多反应性抗体的模板。在设计中,我们利用分子模型对CMP与模板的增强结合进行了结构分析。与临床试验中对CMP的免疫反应相比,亲和CMP纯化的人抗体的聚糖反应模式进一步完善了特异性谱。在本研究中,我们通过考虑LeY和GD2反应性抗体结合乳神经酰胺核心Galβ(1,4)Glcβ(1-1′)Cer的多特异性,进一步定义了这种模仿的分子特征。结合这一最小构建块可用于癌症治疗和诊断,并说明了利用抗体的潜在多特异性和天然抗体在抗原发现和设计中的相关性设计癌症疫苗的新方法。
Harnessing Antibody Polyspecificity for Cancer Immunotherapy.
Targeting the diverse glycan repertoire expressed on tumor cells is considered a viable therapeutic strategy to deal with tumor cell heterogeneity. Inherently polyspecific, natural, glycan-reactive antibodies are purported to be protective in thwarting infections and in cancer immunotherapy. Tumor-associated carbohydrate antigens (TACAs) are related to pathogen glycans, to which nascent or natural antibodies exist and IgM responses are elicited. To capture the polyspecific nature of anticarbohydrate responses, we have focused on the rational design of carbohydrate mimetic peptides (CMPs) cross-reactive with TACA reactive antibodies. In particular, we have focused on the development of CMPs that display reactivity to GD2 and Lewis Y (LeY) reactive monoclonal antibodies. They would serve as templates for pan-immunogens inducing biosimilar polyreactive antibodies. In the design, we relied on structural analyses of CMP's enhanced binding to the templates using molecular modeling. Glycan reactivity patterns of affinity CMP-purified human antibodies further refined specificity profiles in comparison with the immune response to the CMP in clinical trials. In this study, we further define the molecular characteristics for this mimicry by considering the polyspecificity of LeY and GD2 reactive antibodies binding to the lacto-ceramide core Galβ(1,4)Glcβ(1-1')Cer. Binding to this minimum building block can be capitalized on for cancer therapy and diagnostics and illustrates a new approach in designing cancer vaccines taking advantage of the latent polyspecificity of antibodies and the relevance of natural antibodies in antigen discovery and design.