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PLEKHA7 的串联 WW 结构域与 PDZD11 的协同结合促进了与四跨膜蛋白 33 的构象依赖性相互作用。

Cooperative binding of the tandem WW domains of PLEKHA7 to PDZD11 promotes conformation-dependent interaction with tetraspanin 33.

机构信息

Department of Cell Biology, Faculty of Sciences, University of Geneva, Geneva, Switzerland.

The Institute for Genetics and Genomics in Geneva (iGE3), University of Geneva, Geneva, Switzerland.

出版信息

J Biol Chem. 2020 Jul 10;295(28):9299-9312. doi: 10.1074/jbc.RA120.012987. Epub 2020 May 5.

Abstract

Pleckstrin homology domain-containing A7 (PLEKHA7) is a cytoplasmic protein at adherens junctions that has been implicated in hypertension, glaucoma, and responses to α-toxin. Complex formation between PLEKHA7, PDZ domain-containing 11 (PDZD11), tetraspanin 33, and the α-toxin receptor ADAM metallopeptidase domain 10 (ADAM10) promotes junctional clustering of ADAM10 and α-toxin-mediated pore formation. However, how the N-terminal region of PDZD11 interacts with the N-terminal tandem WW domains of PLEKHA7 and how this interaction promotes tetraspanin 33 binding to the WW1 domain is unclear. Here, we used site-directed mutagenesis, glutathione -transferase pulldown experiments, immunofluorescence, molecular modeling, and docking experiments to characterize the mechanisms driving these interactions. We found that Asp-30 of WW1 and His-75 of WW2 interact through a hydrogen bond and, together with Thr-35 of WW1, form a binding pocket that accommodates a polyproline stretch within the N-terminal PDZD11 region. By strengthening the interactions of the ternary complex, the WW2 domain stabilized the WW1 domain and cooperatively promoted the interaction with PDZD11. Modeling results indicated that, in turn, PDZD11 binding induces a conformational rearrangement, which strengthens the ternary complex, and contributes to enlarging a "hydrophobic hot spot" region on the WW1 domain. The last two lipophilic residues of tetraspanin 33, Trp-283 and Tyr-282, were required for its interaction with PLEKHA7. Docking of the tetraspanin 33 C terminus revealed that it fits into the hydrophobic hot spot region of the accessible surface of WW1. We conclude that communication between the two tandem WW domains of PLEKHA7 and the PLEKHA7-PDZD11 interaction modulate the ligand-binding properties of PLEKHA7.

摘要

富含 pleckstrin 同源结构域的蛋白 A7(PLEKHA7)是一种位于黏着连接点的细胞质蛋白,与高血压、青光眼以及对α-毒素的反应有关。PLEKHA7 与 PDZ 结构域蛋白 11(PDZD11)、跨膜蛋白 33 和 α-毒素受体天冬氨酸蛋白酶结构域 10(ADAM10)形成复合物,促进 ADAM10 连接点聚集和 α-毒素介导的孔形成。然而,PDZD11 的 N 端区域如何与 PLEKHA7 的 N 端串联 WW 结构域相互作用,以及这种相互作用如何促进跨膜蛋白 33 与 WW1 结构域结合,目前尚不清楚。在这里,我们使用定点突变、谷胱甘肽转移酶下拉实验、免疫荧光、分子建模和对接实验来阐明驱动这些相互作用的机制。我们发现 WW1 的 Asp-30 和 WW2 的 His-75 通过氢键相互作用,与 WW1 的 Thr-35 一起形成一个结合口袋,容纳 PDZD11 的 N 端区域内的一段多脯氨酸伸展。通过加强三元复合物的相互作用,WW2 结构域稳定了 WW1 结构域,并协同促进与 PDZD11 的相互作用。建模结果表明,反过来,PDZD11 的结合诱导构象重排,从而加强三元复合物,并有助于扩大 WW1 结构域上的“疏水性热点”区域。跨膜蛋白 33 的最后两个疏水性残基 Trp-283 和 Tyr-282 与 PLEKHA7 的相互作用需要。跨膜蛋白 33 C 端的对接显示,它适合于 WW1 可及表面的疏水性热点区域。我们得出结论,PLEKHA7 的两个串联 WW 结构域之间的通讯以及 PLEKHA7-PDZD11 相互作用调节 PLEKHA7 的配体结合特性。

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