首页> 美国卫生研究院文献>Glycobiology >Lactose binding to human galectin-7 (p53-induced gene 1) induces long-range effects through the protein resulting in increased dimer stability and evidence for positive cooperativity
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Lactose binding to human galectin-7 (p53-induced gene 1) induces long-range effects through the protein resulting in increased dimer stability and evidence for positive cooperativity

机译:乳糖与人半乳糖凝集素7(p53诱导的基因1)的结合可通过该蛋白质诱导远距离作用从而导致二聚体稳定性增加并显示出积极的协同作用

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摘要

The product of p53-induced gene 1 is a member of the galectin family, i.e., galectin-7 (Gal-7). To move beyond structural data by X-ray diffraction, we initiated the study of the lectin by nuclear magnetic resonance (NMR) and circular dichroism spectroscopies, and molecular dynamics (MD) simulations. In concert, our results indicate that lactose binding to human Gal-7 induces long-range effects (minor conformational shifts and changes in structural dynamics) throughout the protein that result in stabilization of the dimer state, with evidence for positive cooperativity. Monte Carlo fits of 15N-Gal-7 HSQC titrations with lactose using a two-site model yield K1 = 0.9 ± 0.6 × 103 M−1 and K2 = 3.4 ± 0.8 × 103 M−1. Ligand binding-induced stabilization of the Gal-7 dimer was supported by several lines of evidence: MD-based calculations of interaction energies between ligand-loaded and ligand-free states, gel filtration data and hetero-FRET spectroscopy that indicate a highly reduced tendency for dimer dissociation in the presence of lactose, CD-based thermal denaturation showing that the transition temperature of the lectin is significantly increased in the presence of lactose, and saturation transfer difference (STD) NMR using a molecular probe of the monomer state whose presence is diminished in the presence of lactose. MD simulations with the half-loaded ligand-bound state also provided insight into how allosteric signaling may occur. Overall, our results reveal long-range effects on Gal-7 structure and dynamics, which factor into entropic contributions to ligand binding and allow further comparisons with other members of the galectin family.
机译:p53诱导的基因1的产物是半乳凝素家族的成员,即半乳凝素-7(Gal-7)。为了通过X射线衍射超越结构数据,我们开始了通过核磁共振(NMR)和圆二色性光谱学以及分子动力学(MD)模拟的凝集素研究。一致地,我们的结果表明,乳糖与人Gal-7的结合会在整个蛋白质中引起远距离影响(微小构象变化和结构动力学变化),从而导致二聚体状态稳定,并具有积极的协同作用的证据。使用两个位点模型的乳糖对 15 N-Gal-7 HSQC滴定进行蒙特卡罗拟合,得出K1 = 0.9±0.6×10 3 M −1 < / sup>,并且K2 = 3.4±0.8×10 3 M -1 。配体结合诱导的Gal-7二聚体的稳定得到了以下证据的支持:基于MD的配体负载态和无配体态之间相互作用能的计算,凝胶过滤数据和异FRET光谱,表明趋势大大降低对于在乳糖存在下的二聚体解离,基于CD的热变性表明在乳糖存在下凝集素的转变温度显着提高,并且使用存在以下单体状态的分子探针进行的饱和转移差(STD)NMR在乳糖存在下减少。具有半载配体结合状态的MD模拟也提供了变构信号如何发生的见解。总的来说,我们的研究结果揭示了对Gal-7结构和动力学的长期影响,这是熵对配体结合的贡献,并且可以与半乳糖凝集素家族的其他成员进行进一步比较。

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