Tettey-Matey Abraham, Donati Viola, Cimmino Chiara, Di Pietro Chiara, Buratto Damiano, Panarelli Mariateresa, Reale Alberto, Calistri Arianna, Fornaini Maria Vittoria, Zhou Ruhong, Yang Guang, Zonta Francesco, Marazziti Daniela, Mammano Fabio
CNR Institute of Biochemistry and Cell Biology, Monterotondo, Rome, 00015, Italy.
Present Address, CNR Institute of Biophysics, Genoa, 16149, Italy.
Cell Commun Signal. 2024 Dec 5;22(1):589. doi: 10.1186/s12964-024-01969-0.
Connexins (Cxs) are fundamental in cell-cell communication, functioning as gap junction channels (GJCs) that facilitate solute exchange between adjacent cells and as hemichannels (HCs) that mediate solute exchange between the cytoplasm and the extracellular environment. Mutations in the GJB1 gene, which encodes Cx32, lead to X-linked Charcot-Marie-Tooth type 1 (CMTX1), a rare hereditary demyelinating disorder of the peripheral nervous system (PNS) without an effective cure or treatment. In Schwann cells, Cx32 HCs are thought to play a role in myelination by enhancing intracellular and intercellular Ca signaling, which is crucial for proper PNS myelination. Single-point mutations (p.S85C, p.D178Y, p.F235C) generate pathological Cx32 HCs characterized by increased permeability ("leaky") or excessive activity ("hyperactive").We investigated the effects of abEC1.1-hIgG1, a fully human immunoglobulin G1 (hIgG1) monoclonal antibody, on wild-type (WT) and mutant Cx32D178Y HCs. Using HeLa DH cells conditionally co-expressing Cx and a genetically encoded Ca biosensor (GCaMP6s), we demonstrated that mutant HCs facilitated 58% greater Ca uptake in response to elevated extracellular Ca concentrations ([Ca]) compared to WT HCs. abEC1.1-hIgG1 dose-dependently inhibited Ca uptake, achieving a 50% inhibitory concentration (EC) of ~ 10 nM for WT HCs and ~ 80 nM for mutant HCs. Additionally, the antibody suppressed DAPI uptake and ATP release. An atomistic computational model revealed that serine 56 (S56) of the antibody interacts with aspartate 178 (D178) of WT Cx32 HCs, contributing to binding affinity. Despite the p.D178Y mutation weakening this interaction, the antibody maintained binding to the mutant HC epitope at sub-micromolar concentrations.In conclusion, our study shows that abEC1.1-hIgG1 effectively inhibits both WT and mutant Cx32 HCs, highlighting its potential as a therapeutic approach for CMTX1. These findings expand the antibody's applicability for treating diseases associated with Cx HCs and inform the rational design of next-generation antibodies with enhanced affinity and efficacy against mutant HCs.
连接蛋白(Cxs)在细胞间通讯中起着基础性作用,作为间隙连接通道(GJCs)促进相邻细胞间的溶质交换,同时作为半通道(HCs)介导细胞质与细胞外环境之间的溶质交换。编码Cx32的GJB1基因突变会导致X连锁遗传性1型腓骨肌萎缩症(CMTX1),这是一种罕见的外周神经系统(PNS)遗传性脱髓鞘疾病,目前尚无有效的治愈方法。在施万细胞中,Cx32半通道被认为通过增强细胞内和细胞间的钙信号传导在髓鞘形成中发挥作用,而这对于PNS的正常髓鞘形成至关重要。单点突变(p.S85C、p.D178Y、p.F235C)会产生具有通透性增加(“渗漏”)或活性过高(“过度活跃”)特征的病理性Cx32半通道。我们研究了完全人源化免疫球蛋白G1(hIgG1)单克隆抗体abEC1.1-hIgG1对野生型(WT)和突变型Cx32D178Y半通道的影响。使用条件性共表达Cx和基因编码钙生物传感器(GCaMP6s)的HeLa DH细胞,我们证明,与野生型半通道相比,突变型半通道在细胞外钙浓度([Ca])升高时促进的钙摄取增加了58%。abEC1.1-hIgG1呈剂量依赖性抑制钙摄取,对野生型半通道的50%抑制浓度(EC)约为10 nM,对突变型半通道约为80 nM。此外,该抗体还抑制了DAPI摄取和ATP释放。一个原子水平的计算模型表明,抗体的丝氨酸56(S56)与野生型Cx32半通道的天冬氨酸178(D178)相互作用,有助于结合亲和力。尽管p.D178Y突变削弱了这种相互作用,但该抗体在亚微摩尔浓度下仍能与突变型半通道表位保持结合。总之,我们的研究表明,abEC1.1-hIgG1能有效抑制野生型和突变型Cx32半通道,突出了其作为CMTX1治疗方法的潜力。这些发现扩展了该抗体在治疗与Cx半通道相关疾病方面的适用性,并为设计下一代对突变型半通道具有更高亲和力和疗效的抗体提供了理论依据。