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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Single-Molecule Pair Studies of the Interactions of the alpha-GalNAc (Tn-Antigen) Form of Porcine Submaxillary Mucin with Soybean Agglutinin
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Single-Molecule Pair Studies of the Interactions of the alpha-GalNAc (Tn-Antigen) Form of Porcine Submaxillary Mucin with Soybean Agglutinin

机译:猪下颌粘蛋白与大豆凝集素的α-GalNAc(Tn-抗原)形式相互作用的单分子对研究

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Mucins form a group of heavily O-glycosylated biologically important glycoproteins that are involved in a variety of biological functions, including modulating immune response, inflammation, and adhesion. Mucins are also involved in cancer and metastasis and often express diagnostic cancer antigens. Recently, a modified porcine submaxillary mucin (Tn-PSM) containing GalNAc alpha 1-O-Ser/Thr residues was shown to bind to soybean agglutinin (SBA) with similar to 10(6)-fold enhanced affinity relative to GalNAc alpha 1-O-Ser, the pancarcinoma carbohydrate antigen. In this study, dynamic force spectroscopy is used to investigate molecular pairs of SBA and Tn-PSM. A number of force jumps that demonstrate unbinding or rebinding events were observed tip to a distance equal to 2.0 mu m, consistent with the length of the mucin chain. The unbinding force increased from 103 to 402 pN with increasing force loading rate. The position of the activation barrier in the energy landscape of the interaction was 0.1 nm. The lifetime of the SBA-TnPSM complex in the absence of applied force was determined to be in the range 1.3-1.9 s. Kinetic parameters describing the rate of dissociation of other sugar lectin interactions are in the range 3.3 x 10(-3)-2.5 x 10(-3) s. The long lifetime of the SBA-TnPSM complex is compatible with a binding model in which lectin molecules "bind and jump" from alpha-GalNAc residue to alpha-GalNAc residue along the polypeptide chain of Tn-PSM before dissociating. These findings have important implications for the molecular recognition properties of mucins.
机译:粘蛋白形成一组O-糖基化的,生物学上重要的重要糖蛋白,这些蛋白参与多种生物学功能,包括调节免疫应答,炎症和粘附。粘蛋白也参与癌症和转移,并经常表达诊断性癌症抗原。最近,显示含有GalNAc alpha 1-O-Ser / Thr残基的改良的猪下颌粘蛋白(Tn-PSM)与大豆凝集素(SBA)结合,相对于GalNAc alpha 1-具有约10(6)倍的亲和力泛癌碳水化合物抗原O-Ser。在这项研究中,动态力谱用于研究SBA和Tn-PSM的分子对。观察到许多表明未结合或重新结合事件的力跃变,其尖端的距离等于黏蛋白链的长度,等于2.0微米。随着力加载速率的增加,解束力从103 pN增加到402 pN。相互作用的能量图中活化势垒的位置为0.1 nm。在没有施加力的情况下,SBA-TnPSM复合物的寿命被确定为1.3-1.9 s。描述其他糖凝集素相互作用的解离速率的动力学参数在3.3 x 10(-3)-2.5 x 10(-3)s范围内。 SBA-TnPSM复合物的长寿命与结合模型兼容,在该模型中,凝集素分子在解离之前会沿着Tn-PSM的多肽链从α-GalNAc残基“结合并跳跃”到α-GalNAc残基。这些发现对粘蛋白的分子识别特性具有重要意义。

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