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Role of Altered Sialylation of the I-Like Domain of β1 Integrin in the Binding of Fibronectin to β1 Integrin: Thermodynamics and Conformational Analyses

机译:β1整合素I类结构域的唾液酸化改变在纤连蛋白与β1整合素结合中的作用:热力学和构象分析

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摘要

N-glycosylation of the I-like domain of β1 integrin plays an essential role in integrin structure and function, and the altered sialylation of β1 integrin regulates β1 integrin binding to fibronectin. However, the structural basis underlying the effect of altered sialylation of the β1 I-like domain on β1 integrin binding to fibronectin remains largely unknown. In this study, we used a combination of molecular dynamics simulations and binding free energy analyses to investigate changes in binding thermodynamics and in conformation of the glycosylated β1 I-like domain-FN-III9-10 complex caused by altered sialylation of the β1 I-like domain. Binding free energy analyses showed that desialylation of β1 I-like domain increased β1 integrin binding to fibronectin, consistent with experimental results. Interaction analyses showed that altered sialylation of the β1 I-like domain resulted in significant changes in the interaction of the N-glycans of the I-like domain with both the I-like domain and fibronectin, and these changes could directly affect the allosteric regulation of the interaction between the I-like domain and fibronectin. Altered sialylation of the β1 I-like domain caused significant conformational changes in key functional sites of both the β1 I-like domain and fibronectin. In addition, altered sialylation of the β1 I-like domain resulted in changes in the degree of correlated motions between residues in the I-like domain and residues in fibronectin, and in the degree of motion changes in fibronectin, which could affect β1 integrin binding to fibronectin. We believe results from this study provide thermodynamic and structural evidence for a role of altered sialylation of β1 integrin in regulating β1 integrin binding to fibronectin and it's induced cellular activities.
机译:β1整合素的I样结构域的N-糖基化在整合素的结构和功能中起着至关重要的作用,而改变的β1整合素的唾液酸化作用调节β1整合素与纤连蛋白的结合。然而,改变β1I样结构域的唾液酸化对β1整联蛋白与纤连蛋白结合的影响的结构基础仍然是未知的。在这项研究中,我们结合了分子动力学模拟和结合自由能分析,研究了结合热力学的变化以及由糖基化的β1I样结构域-FN-III9-10复合体的构型变化,该变化是由β1I-的唾液酸化改变引起的像域。结合自由能分析表明,β1I-样结构域的去唾液酸化增加了β1整联蛋白与纤连蛋白的结合,与实验结果一致。相互作用分析表明,β1I-样结构域的唾液酸化改变导致I-样结构域的N-聚糖与I-样结构域和纤连蛋白的相互作用发生显着变化,这些变化可直接影响变构调节I样结构域与纤连蛋白之间的相互作用。 β1I样结构域的唾液酸化改变引起β1I样结构域和纤连蛋白的关键功能位点的显着构象变化。另外,β1I-样结构域的唾液酸化改变导致I-样结构域中的残基与纤连蛋白中的残基之间的相关运动程度发生变化,并导致纤连蛋白的运动变化程度发生变化,这可能会影响β1整联蛋白的结合。纤连蛋白。我们相信这项研究的结果为改变β1整合素的唾液酸化作用在调节β1整合素与纤连蛋白的结合及其诱导的细胞活性中的作用提供了热力学和结构证据。

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    Pan, Di; Song, Yuhua;

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  • 年度 2010
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