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The α-galactomannan Davanat binds galectin-1 at a site different from the conventional galectin carbohydrate binding domain

机译:α-半乳甘露聚糖Davanat在不同于常规半乳糖凝集素碳水化合物结合结构域的位点结合半乳糖凝集素-1

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摘要

Galectins are a sub-family of lectins, defined by their highly conserved β-sandwich structures and ability to bind to β-galactosides, like Gal β1-4 Glc (lactose). Here, we used 15N-1H HSQC and pulse field gradient (PFG) NMR spectroscopy to demonstrate that galectin-1 (gal-1) binds to the relatively large galactomannan Davanat, whose backbone is composed of β1-4-linked d-mannopyranosyl units to which single d-galactopyranosyl residues are periodically attached via α1-6 linkage (weight-average MW of 59 kDa). The Davanat binding domain covers a relatively large area on the surface of gal-1 that runs across the dimer interface primarily on that side of the protein opposite to the lactose binding site. Our data show that gal-1 binds Davanat with an apparent equilibrium dissociation constant (Kd) of 10 × 10−6 M, compared to 260 × 10−6 M for lactose, and a stiochiometry of about 3 to 6 gal-1 molecules per Davanat molecule. Mannan also interacts at the same galactomannan binding domain on gal-1, but with at least 10-fold lower avidity, supporting the role of galactose units in Davanat for relatively strong binding to gal-1. We also found that the β-galactoside binding domain remains accessible in the gal-1/Davanat complex, as lactose can still bind with no apparent loss in affinity. In addition, gal-1 binding to Davanat also modifies the supermolecular structure of the galactomannan and appears to reduce its hydrodynamic radius and disrupt inter-glycan interactions thereby reducing glycan-mediated solution viscosity. Overall, our findings contribute to understanding gal-1–carbohydrate interactions and provide insight into gal-1 function with potentially significant biological consequences.
机译:半乳凝素是凝集素的一个亚家族,由其高度保守的β夹心结构和与β-半乳糖苷(如Galβ1-4Glc(乳糖))结合的能力定义。在这里,我们使用了 15 N- 1 H HSQC和脉冲场梯度(PFG)NMR光谱法来证明galectin-1(gal-1)与相对较大的半乳甘露聚糖结合达凡纳特(Davanat),其骨架由与β1-4相连的d-甘露吡喃糖基单元组成,单个d-吡喃并吡喃糖基残基通过α1-6键连接(重均分子量为59 kDa)周期性连接。 Davanat结合结构域在gal-1表面上覆盖了较大区域,该区域横穿二聚体界面,主要在蛋白质的与乳糖结合位点相反的那一侧。我们的数据表明gal-1以10×10 −6 M的表观平衡解离常数(Kd)结合Davanat,而乳糖为260×10 −6 M和每个Davanat分子约3至6 gal-1分子的化学计量。甘露聚糖还与gal-1上的同一半乳甘露聚糖结合域相互作用,但亲和力至少降低了10倍,从而支持了Davanat中半乳糖单元对gal-1的较强结合的作用。我们还发现,由于乳糖仍然可以结合而亲和力没有明显损失,因此在gal-1 / Davanat复合物中,β-半乳糖苷结合结构域仍然可访问。此外,与Davanat结合的gal-1还修饰了半乳甘露聚糖的超分子结构,并且似乎减小了其流体力学半径并破坏了糖间相互作用,从而降低了聚糖介导的溶液粘度。总体而言,我们的发现有助于理解gal-1与碳水化合物的相互作用,并深入了解gal-1的功能并可能产生重大的生物学后果。

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