Kemin Tan, Min Zhou, Angela J Ahrendt, Norma E C Duke, Nassif Tabaja, William J Ball, Terence L Kirley, Andrew B Norman, Andrzej Joachimiak, Marianne Schiffer, Rosemarie Wilton, P Raj Pokkuluri
{"title":"高亲和力抗可卡因抗体 h2E2 的 Fab 片段的游离和配体结构分析。","authors":"Kemin Tan, Min Zhou, Angela J Ahrendt, Norma E C Duke, Nassif Tabaja, William J Ball, Terence L Kirley, Andrew B Norman, Andrzej Joachimiak, Marianne Schiffer, Rosemarie Wilton, P Raj Pokkuluri","doi":"10.1107/S2053230X19013608","DOIUrl":null,"url":null,"abstract":"<p><p>A high-affinity anti-cocaine monoclonal antibody, designated h2E2, is entering phase 1 clinical trials for cocaine abuse therapy. To gain insight into the molecular details of its structure that are important for binding cocaine and cocaine metabolites, the Fab fragment was generated and crystallized with and without ligand. Structures of the unliganded Fab and the Fab fragment bound to benzoylecgonine were determined, and were compared with each other and with other crystallized anti-cocaine antibodies. The affinity of the h2E2 antibody for cocaine is 4 nM, while that of the cocaine metabolite benzoylecgonine is 20 nM. Both are higher than the reported affinity for cocaine of the two previously crystallized anti-cocaine antibodies. Consistent with cocaine fluorescent quenching binding studies for the h2E2 mAb, four aromatic residues in the CDR regions of the Fab (TyrL32, TyrL96, TrpL91 and TrpH33) were found to be involved in ligand binding. The aromatic side chains surround and trap the tropane moiety of the ligand in the complex structure, forming significant van der Waals interactions which may account for the higher affinity observed for the h2E2 antibody. A water molecule mediates hydrogen bonding between the antibody and the carbonyl group of the benzoyl ester. The affinity of binding to h2E2 of benzoylecgonine differs only by a factor of five compared with that of cocaine; therefore, it is suggested that h2E2 would bind cocaine in the same way as observed in the Fab-benzoylecgonine complex, with minor rearrangements of some hypervariable segments of the antibody.</p>","PeriodicalId":50368,"journal":{"name":"Industrial and Engineering Chemistry","volume":"43 1","pages":"697-706"},"PeriodicalIF":0.0000,"publicationDate":"2019-11-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6839822/pdf/","citationCount":"0","resultStr":"{\"title\":\"Structural analysis of free and liganded forms of the Fab fragment of a high-affinity anti-cocaine antibody, h2E2.\",\"authors\":\"Kemin Tan, Min Zhou, Angela J Ahrendt, Norma E C Duke, Nassif Tabaja, William J Ball, Terence L Kirley, Andrew B Norman, Andrzej Joachimiak, Marianne Schiffer, Rosemarie Wilton, P Raj Pokkuluri\",\"doi\":\"10.1107/S2053230X19013608\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>A high-affinity anti-cocaine monoclonal antibody, designated h2E2, is entering phase 1 clinical trials for cocaine abuse therapy. 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The aromatic side chains surround and trap the tropane moiety of the ligand in the complex structure, forming significant van der Waals interactions which may account for the higher affinity observed for the h2E2 antibody. A water molecule mediates hydrogen bonding between the antibody and the carbonyl group of the benzoyl ester. 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引用次数: 0
摘要
一种名为 h2E2 的高亲和力抗可卡因单克隆抗体正进入用于可卡因滥用治疗的第一阶段临床试验。为了深入了解其结构中对结合可卡因和可卡因代谢物非常重要的分子细节,我们生成了 Fab 片段,并在有配体和无配体的情况下将其结晶化。测定了未加配体的 Fab 和与苯甲酰基可待因结合的 Fab 片段的结构,并将其与其他结晶的抗可卡因抗体进行了比较。h2E2 抗体对可卡因的亲和力为 4 nM,而对可卡因代谢物苯甲酰可待因的亲和力为 20 nM。两者都高于之前报道的两种结晶化抗可卡因抗体对可卡因的亲和力。与对 h2E2 mAb 进行的可卡因荧光淬灭结合研究一致,发现 Fab CDR 区域的四个芳香族残基(TyrL32、TyrL96、TrpL91 和 TrpH33)参与了配体结合。在复合物结构中,芳香族侧链环绕并捕获配体的托烷分子,形成重要的范德华相互作用,这可能是 h2E2 抗体亲和力较高的原因。一个水分子介导了抗体与苯甲酰酯羰基之间的氢键。与可卡因相比,苯甲酰可待因与 h2E2 的亲和力仅相差五倍;因此,有人认为 h2E2 与可卡因的结合方式与在 Fab-苯甲酰可待因复合物中观察到的方式相同,只是对抗体的某些超变异区段进行了微小的重排。
Structural analysis of free and liganded forms of the Fab fragment of a high-affinity anti-cocaine antibody, h2E2.
A high-affinity anti-cocaine monoclonal antibody, designated h2E2, is entering phase 1 clinical trials for cocaine abuse therapy. To gain insight into the molecular details of its structure that are important for binding cocaine and cocaine metabolites, the Fab fragment was generated and crystallized with and without ligand. Structures of the unliganded Fab and the Fab fragment bound to benzoylecgonine were determined, and were compared with each other and with other crystallized anti-cocaine antibodies. The affinity of the h2E2 antibody for cocaine is 4 nM, while that of the cocaine metabolite benzoylecgonine is 20 nM. Both are higher than the reported affinity for cocaine of the two previously crystallized anti-cocaine antibodies. Consistent with cocaine fluorescent quenching binding studies for the h2E2 mAb, four aromatic residues in the CDR regions of the Fab (TyrL32, TyrL96, TrpL91 and TrpH33) were found to be involved in ligand binding. The aromatic side chains surround and trap the tropane moiety of the ligand in the complex structure, forming significant van der Waals interactions which may account for the higher affinity observed for the h2E2 antibody. A water molecule mediates hydrogen bonding between the antibody and the carbonyl group of the benzoyl ester. The affinity of binding to h2E2 of benzoylecgonine differs only by a factor of five compared with that of cocaine; therefore, it is suggested that h2E2 would bind cocaine in the same way as observed in the Fab-benzoylecgonine complex, with minor rearrangements of some hypervariable segments of the antibody.