Cellular and Structural Physiology Institute, Nagoya University, Furo-cho, Chikusa, Nagoya, 464-8601, Japan.
Graduate School of Pharmaceutical Sciences, Nagoya University, Furo-cho, Chikusa, Nagoya, 464-8601, Japan.
Nat Commun. 2019 Feb 18;10(1):816. doi: 10.1038/s41467-019-08760-7.
Tight junction is a cell adhesion apparatus functioning as barrier and/or channel in the paracellular spaces of epithelia. Claudin is the major component of tight junction and polymerizes to form tight junction strands with various morphologies that may correlate with their functions. Here we present the crystal structure of mammalian claudin-3 at 3.6 Å resolution. The third transmembrane helix of claudin-3 is clearly bent compared with that of other subtypes. Structural analysis of additional two mutants with a single mutation representing other subtypes in the third helix indicates that this helix takes a bent or straight structure depending on the residue. The presence or absence of the helix bending changes the positions of residues related to claudin-claudin interactions and affects the morphology and adhesiveness of the tight junction strands. These results evoke a model for tight junction strand formation with different morphologies - straight or curvy strands - observed in native epithelia.
紧密连接是上皮细胞旁细胞间隙的一种细胞黏附装置,具有屏障和/或通道的功能。 Claudin 是紧密连接的主要组成部分,它聚合形成具有各种形态的紧密连接链,这些形态可能与其功能相关。 在这里,我们呈现了 3.6Å 分辨率的哺乳动物 Claudin-3 的晶体结构。 Claudin-3 的第三个跨膜螺旋与其他亚型相比明显弯曲。 对另外两个具有单个突变的突变体的结构分析表明,该螺旋采用弯曲或直线结构,具体取决于残基。 螺旋的弯曲存在或不存在会改变与 Claudin-Claudin 相互作用相关的残基的位置,并影响紧密连接链的形态和黏附性。 这些结果提出了一个模型,用于解释在天然上皮细胞中观察到的不同形态的紧密连接链形成 - 直链或弯链。