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首页> 外文期刊>Journal of Molecular Biology >The glycophorin A transmembrane sequence within integrin αvβ3 creates a non-signaling integrin with low basal affinity that is strongly adhesive under force
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The glycophorin A transmembrane sequence within integrin αvβ3 creates a non-signaling integrin with low basal affinity that is strongly adhesive under force

机译:整联蛋白αvβ3中的糖蛋白A跨膜序列产生低信号亲和力的无信号整联蛋白,在力的作用下具有很强的粘附

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摘要

Integrin heterodimeric cell adhesion and signaling receptors bind ligands of the extracellular matrix and relay signals bidirectionally across cell membranes. Thereby, integrins adopt multiple conformational and functional states that control ligand binding affinity and linkage to cytosolic/ cytoskeletal proteins. Here, we designed an integrin chimera encompassing the strongly dimerizing transmembrane domain (TMD) of glycophorin A (GpA) in the context of the otherwise unaltered integrin αvβ3. We hypothesized that this chimera should have a low basal affinity to soluble ligand but should be force-activatable. By cellular expression of this chimera, we found a decreased integrin affinity to a soluble peptide ligand and inhibited intracellular signaling. However, under external forces applied by an atomic force microscope or by a spinning disc device causing shear forces, the mutant caused stronger cell adhesion than the wild-type integrin. Our results demonstrate that the signaling- and migration-incapable integrin αvβ3-TMD mutant TMD-GpA shows the characteristics of a primed integrin state, which is of low basal affinity in the absence of forces, but may form strong bonds in the presence of forces. Thus, TMD-GpA may mimic a force-activatable signaling intermediate.
机译:整联蛋白异源二聚体细胞粘附和信号受体结合细胞外基质的配体,并跨细胞膜双向传递信号。因此,整联蛋白采取多种构象和功能状态来控制配体结合亲和力和与胞质/细胞骨架蛋白的连接。在这里,我们设计了一个整联蛋白嵌合体,该整联蛋白在其他方面未改变的整联蛋白αvβ3的背景下,包含了糖蛋白A(GpA)的强二聚跨膜结构域(TMD)。我们假设该嵌合体对可溶性配体的基础亲和力应低,但应可强制激活。通过这种嵌合体的细胞表达,我们发现整合素对可溶性肽配体的亲和力降低,并抑制了细胞内信号传导。但是,在由原子力显微镜或旋转盘装置施加的外力引起剪切力的作用下,该突变体比野生型整联蛋白引起更强的细胞粘附力。我们的研究结果表明,没有信号传导和迁移能力的整联蛋白αvβ3-TMD突变体TMD-GpA表现出整联蛋白状态的特征,在没有力的情况下基础亲和力较低,但在有力的情况下可能形成强键。因此,TMD-GpA可以模拟力可激活的信号传导中间体。

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