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Structures of heparin-derived tetrasaccharide bound to cobra cardiotoxins: Heparin binding at a single protein site with diverse side chain interactions

机译:肝素衍生的四糖与眼镜蛇心脏毒素结合的结构:肝素在单个蛋白质位点结合,具有多种侧链相互作用

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摘要

Cobra cardiotoxins (CTXs) are three-fingered polypeptides with positively charged domains that have been shown to bind to anionic ligands of snake venom citrate, glycosaminoglycans, sulfoglycosphingolipid, and nucleotide triphosphate with various biochemical effects including toxin dimerization, cell surface retention, membrane pore formation, cell internalization and blocking of enzymatic activities of kinase and ATPase. The reported anionic binding sites, however, are found to be different among different CTX homologues for potentially different CTX activities. Herein, by NMR studies of the binding of inorganic phosphate, dATP (stable form of ATP), and heparin-derived tetrasaccharide to Naja atra CTX A1, a novel CTX molecule exhibiting in vivo necrotic activity on skeletal muscle, we demonstrate that diverse ligands binding to CTXs could also occur at a single protein site with flexible side chain interactions. The flexibility of such an interaction is also illustrated by the available heparin-CTX A3 complex structures with different heparin chain lengths binding at the same site. Our results provide a likely structural explanation on how the interaction between heparan sufate and proteins depends more on the overall charge cluster organization rather than on their fine structures. We also suggest that the ligand binding site of CTX homologues can be fine-tuned by nonconserved residues near the binding pocket because of their flexible side chain interaction and dimerization ability, even for the rigid CTX molecules tightened by four disulfide bonds.
机译:眼镜蛇心毒素(CTX)是具有带正电荷的域的三指多肽,已显示与蛇毒柠檬酸盐,糖胺聚糖,磺基糖鞘脂和三磷酸核苷酸的阴离子配体结合,具有多种生物化学作用,包括毒素二聚化,细胞表面保留,膜孔形成,细胞内在化和激酶和ATPase酶活性的阻断。然而,发现所报道的阴离子结合位点在不同的CTX同系物之间对于潜在的不同的CTX活性是不同的。在此,通过对无机磷酸盐,dATP(ATP的稳定形式)和肝素衍生的四糖与Naja atra CTX A1(一种对骨骼肌表现出体内坏死活性的新型CTX分子)结合的NMR研究,我们证明了各种配体结合CTX的抗性也可能发生在具有灵活侧链相互作用的单个蛋白质位点。这种相互作用的灵活性还通过在同一位点结合不同肝素链长的可用肝素-CTX A3复合结构来说明。我们的结果提供了可能的结构解释,说明乙酰肝素和蛋白质之间的相互作用如何更多地取决于总体电荷簇的组织而不是其精细的结构。我们还建议,即使对于通过四个二硫键收紧的刚性CTX分子,CTX同源物的配体结合位点也可以通过结合口袋附近的非保守残基进行微调,因为它们具有灵活的侧链相互作用和二聚能力。

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