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肿瘤坏死因子凝集素样结构域及其衍生 TIP 肽寡糖结合位点的计算研究。

A computational study of the oligosaccharide binding sites in the lectin-like domain of Tumor Necrosis Factor and the TNF-derived TIP peptide.

机构信息

University of South Bohemia in Ceské Budejovice, Faculty of Science, Czech Republic.

出版信息

Curr Pharm Des. 2012;18(27):4236-43. doi: 10.2174/138161212802430549.

Abstract

The lectin-like domain of Tumor Necrosis Factor (TNF), mimicked by the TIP peptide, activates amiloride-sensitive sodium uptake in type II alveolar epithelial cells and as such increases alveolar liquid clearance in dysfunctional lungs. This protective effect is blunted upon mutation of residues T105, E107 and E110 in human TNF into alanine or upon pre-incubation of the cytokine with the disaccharide N,N'-diacetylchitobiose. In this study, we used molecular docking and molecular dynamics simulation to predict the binding sites for N,N'-diacetylchitobiose and trimannose-O-ethyl in the lectin-like domain of TNF and in the TIP peptide. Specific sites (K98, S99, P100, Q102 and E116) in the three loops of the lectin-like domain provide specific binding for both oligosaccharides, but none of the residues crucial for anti-edema activity are involved in hydrogen bonding with oligosaccharides or are subjected to steric hindrance by them. These results thus suggest that neither chitobiose nor trimannose affect crucial amino acids, while they occupy the cavity in the lectin-like domain. Consequently, both crucial amino acids and the emptiness of the cavity in the lectin-like domain may be critical for TNF's lectin-like activity. Analogously, the R4, E5, P7, Y16 amino acids of the TIP peptide are involved in forming hydrogen bonds with both oligosaccharides, whereas residues T6, E8 and E11 (corresponding to T105, E107 and E110 in hTNF) play an important role in stabilizing the peptide-oligosaccharide complex, supporting the hypothesis that amino acids in the polar region (TPEGAE) of the TIP peptide represent only a partial binding motif for sugars.

摘要

肿瘤坏死因子(TNF)的凝集素样结构域,由 TIP 肽模拟,可激活 II 型肺泡上皮细胞中的阿米洛利敏感的钠摄取,从而增加功能失调肺中的肺泡液体清除率。这种保护作用在 TNF 中残基 T105、E107 和 E110 突变为丙氨酸或细胞因子与二乙酰壳二糖预孵育时会减弱。在这项研究中,我们使用分子对接和分子动力学模拟来预测 N,N'-二乙酰壳二糖和三甘露糖-O-乙基在 TNF 凝集素样结构域和 TIP 肽中的结合位点。三个环中的特定位点(K98、S99、P100、Q102 和 E116)为两种寡糖提供了特异性结合,但对于抗水肿活性至关重要的没有一个残基参与与寡糖的氢键形成或受到它们的空间位阻。这些结果表明,壳二糖和三甘露糖都不会影响关键氨基酸,而它们占据了凝集素样结构域中的空腔。因此,对于 TNF 的凝集素样活性,关键氨基酸和凝集素样结构域中的空腔的空虚都可能是至关重要的。类似地,TIP 肽的 R4、E5、P7、Y16 氨基酸与两种寡糖形成氢键,而 T6、E8 和 E11(对应 hTNF 中的 T105、E107 和 E110)残基在稳定肽-寡糖复合物中起重要作用,支持 TIP 肽的极性区域(TPEGAE)中的氨基酸仅代表糖的部分结合基序的假设。

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