Clinical Physiology/Nutritional Medicine, Medizinische Klinik für Gastroenterologie, Infektiologie und Rheumatologie, Charité - Universitätsmedizin Berlin, Berlin, Germany.
Ann N Y Acad Sci. 2022 Sep;1515(1):129-142. doi: 10.1111/nyas.14794. Epub 2022 Jun 1.
Although functional and structural models for paracellular channels formed by claudins have been reported, mechanisms regulating charge and size selectivity of these channels are unknown in detail. Here, claudin-15 and claudin-10b cation channels showing high-sequence similarity but differing channel properties were analyzed. Mutants of pore-lining residues were expressed in MDCK-C7 cells. In claudin-15, proposed ion interaction sites (D55 and E64) conserved between both claudins were neutralized. D55N and E64Q substitutions decreased ion permeabilities, and D55N/E64Q had partly additive effects. D55N increased cation dehydration capability and decreased pore diameter. Additionally, residues differing between claudin-15 and -10b close to pore center were analyzed. Claudin-10b-mimicking W63K affected neither assembly nor function of claudin-15 channels. In contrast, in claudin-10b, corresponding (claudin-15b-mimicking) K64W and K64M substitutions disturbed integration into tight junction and slightly altered relative permeabilities for differently sized monovalent cations. Removal of claudin-10b-specific negative charge (D36A substitution) was without effect. The data suggest that a common tetra-aspartate ring (D55/D56) in pore center of claudin-15/-10b channels directly attracts cations, while E64/D65 may be at least partly shielded by W63/K64. Charge at position W63/K64 affects assembly and properties for claudin-10b but not for claudin-15 channels. Our findings add to the mechanistic understanding of the determinants of paracellular cation permeability.
虽然已经报道了由紧密连接蛋白形成的细胞旁通道的功能和结构模型,但这些通道的电荷和大小选择性的调节机制还不清楚。在这里,分析了具有高序列相似性但通道特性不同的紧密连接蛋白 15 和 10b 阳离子通道。在 MDCK-C7 细胞中表达了孔衬残基的突变体。在紧密连接蛋白 15 中,保守于两个紧密连接蛋白之间的离子相互作用位点(D55 和 E64)被中和。D55N 和 E64Q 取代降低了离子通透性,并且 D55N/E64Q 具有部分加性效应。D55N 增加了阳离子去水能力并减小了孔径。此外,还分析了紧密连接蛋白 15 和 -10b 之间孔中心附近的差异残基。紧密连接蛋白 10b 模拟 W63K 既不影响紧密连接蛋白 15 通道的组装也不影响其功能。相比之下,在紧密连接蛋白 10b 中,相应的(紧密连接蛋白 15b 模拟)K64W 和 K64M 取代干扰了紧密连接的整合,并略微改变了不同大小单价阳离子的相对通透性。去除紧密连接蛋白 10b 特异性负电荷(D36A 取代)没有影响。数据表明,紧密连接蛋白 15/-10b 通道孔中心的共同四天门冬氨酸环(D55/D56)直接吸引阳离子,而 E64/D65 可能至少部分被 W63/K64 屏蔽。W63/K64 位置的电荷影响紧密连接蛋白 10b 但不影响紧密连接蛋白 15 通道的组装和性质。我们的研究结果有助于深入了解细胞旁阳离子通透性的决定因素。