Nemecz Dorota, Nowak Weronika A, Nemecz Ákos
Biochemistry Department, Nicolaus Copernicus University in Torun, 87-100 Torun, Poland.
J Med Chem. 2024 Jun 13;67(11):8502-8518. doi: 10.1021/acs.jmedchem.4c00231. Epub 2024 Jun 3.
Pentameric ligand-gated ion channels provide rapid chemical-electrical signal transmission between cells in the central and peripheral nervous system. Their dysfunction is associated with many nervous system disorders. They are composed of five identical (homomeric receptors) or homologous (heteromeric receptors) subunits. VHH nanobodies, or single-chain antibodies, are the variable domain, VH, of antibodies that are composed of the heavy chain only from camelids. Their unique structure results in many specific biochemical and biophysical properties that make them an excellent alternative to conventional antibodies. This Perspective explores the published VHH nanobodies which have been isolated against pentameric ligand-gated ion channel subfamilies. It outlines the genetic and chemical modifications available to alter nanobody function. An assessment of the available functional and structural data indicate that it is feasible to create therapeutic agents and impart, through their modification, a given desired modulatory effect of its target receptor for current stoichiometric-specific VHH nanobodies.
五聚体配体门控离子通道在中枢和外周神经系统的细胞之间提供快速的化学-电信号传递。它们的功能障碍与许多神经系统疾病相关。它们由五个相同的(同聚体受体)或同源的(异聚体受体)亚基组成。VHH纳米抗体,即单链抗体,是仅由骆驼科动物重链组成的抗体可变结构域VH。它们独特的结构导致许多特定的生化和生物物理特性,使其成为传统抗体的极佳替代品。本综述探讨了已分离出的针对五聚体配体门控离子通道亚家族的VHH纳米抗体。它概述了可用于改变纳米抗体功能的基因和化学修饰。对现有功能和结构数据的评估表明,对于当前化学计量特异性的VHH纳米抗体,制造治疗剂并通过修饰赋予其对靶受体特定的所需调节作用是可行的。