首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The occludin and ZO-1 complex defined by small angle X-ray scattering and NMR has implications for modulating tight junction permeability
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The occludin and ZO-1 complex defined by small angle X-ray scattering and NMR has implications for modulating tight junction permeability

机译:由小角度X射线散射和NMR定义的occludin和ZO-1配合物对调节紧密连接渗透性有影响

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摘要

Tight junctions (TJs) are dynamic cellular structures that are critical for compartmentalizing environments within tissues and regulating transport of small molecules, ions, and fluids. Phosphorylation-dependent binding of the transmembrane protein occludin to the structural organizing protein ZO-1 contributes to the regulation of barrier properties; however, the details of their interaction are controversial. Using small angle X-ray scattering (SAXS), NMR chemical shift perturbation, cross-saturation, in vitro binding, and site-directed mutagenesis experiments. we define the interface between the ZO-1 PDZ3-SH3-U5-GuK (PSG) and occludin coiled-coil (CC) domains. The interface is comprised of basic residues in PSG and an acidic region in CC. Complex formation is blocked by a peptide (REESEEYM) that corresponds to CC residues 468–475 and includes a previously uncharacterized phosphosite, with the phosphorylated version having a larger effect. Furthermore, mutation of E470 and E472 reduces cell border localization of occludin. Together, these results localize the interaction to an acidic region in CC and a predominantly basic helix V within the ZO-1 GuK domain. This model has important implications for the phosphorylation-dependent regulation of the occludin∶ZO-1 complex.
机译:紧密连接(TJ)是动态细胞结构,对于分隔组织内的环境和调节小分子,离子和液体的运输至关重要。跨膜蛋白occludin与结构组织蛋白ZO-1的磷酸化依赖性结合有助于调节屏障特性;但是,它们的交互细节还是有争议的。使用小角度X射线散射(SAXS),NMR化学位移扰动,交叉饱和,体外结合和定点诱变实验。我们定义了ZO-1 PDZ3-SH3-U5-GuK(PSG)和occludin卷曲螺旋(CC)域之间的接口。该界面由PSG中的碱性残基和CC中的酸性区域组成。复杂的形成被对应于CC残基468–475的肽(REESEEYM)阻断,并包含一个以前未表征的磷酸位,磷酸化的形式则具有更大的作用。此外,E470和E472的突变减少了occludin的细胞边界定位。总之,这些结果将相互作用定位于ZO-1 GuK域内CC和主要是碱性螺旋V的酸性区域。该模型对occludin∶ZO-1复合物的磷酸化依赖性调控具有重要意义。

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