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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Stabilizing osmolytes' effects on the structure, stability and function of tc-tenecteplase: A one peptide bond digested form of tenecteplase
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Stabilizing osmolytes' effects on the structure, stability and function of tc-tenecteplase: A one peptide bond digested form of tenecteplase

机译:稳定渗透性对TC-Tenecteplase的结构,稳定性和功能的影响:一种肽键的苯锡粘合剂粘合剂

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Organic osmolytes, as major cellular compounds, cause protein stabilization in the native form. In the present study, the possible chaperone effects of the three naturally occurring osmolytes on the two-chain form of tenecteplase (tc-TNK), a recombinant, genetically engineered mutant tissue plasminogen activator, have been explored by using circular dichroism, steady-state fluorescence, UV-Visible spectroscopy, and in silico experiments. The tc-TNK is derived from the one-chain protein upon disruption of one peptide bond. Thermal denaturation experiments showed a slightly more stabilizing effect of the three co-solvents on the single-chain TNK (sc-TNK) in comparison to that on tc-TNK. Unlike single-chain tenecteplase, the two-chain form undergoes reversible denaturation which is somehow perturbed in some cases as the result of the presence of osmolytes. Very minor changes in the secondary structure and the tertiary structure were observed. The molecular dynamics simulations and comparative structural analysis of catalytic domain of the protein in the single-chain and two-chain forms in pure water, mannitol/water, trehalose/water, and sucrose/water showed that while the stabilizing effect of the three osmolytes on tc-TNK might be induced by preferential accumulation of these molecules around the nonpolar and aromatic residues, that is to say, fewer water-hydrophobic residues' interactions in tc-TNK, sc-TNK is stabilized by preferential exclusion effect. (C) 2019 Elsevier B.V. All rights reserved.
机译:有机渗透物,作为主要细胞化合物,导致本地形式的蛋白质稳定化。在本研究中,通过使用圆形二色性,稳态稳态,已经探索了三种天然渗透物(TC-TNK),重组,遗传工程突变组织组织纤溶酶原激活剂的三种天然渗透物的可能伴侣效应已经探讨了荧光,紫外线可见光谱,以及硅实验。在破坏一种肽键时,TC-TNK衍生自单链蛋白。与TC-TNK相比,热变性实验表明单链TNK(SC-TNK)上的三种共溶剂略微稳定效果。与单链Tenecteplase不同,双链形式经历可逆变性,在某些情况下,由于渗透物存在的结果,在某些情况下被扰动。观察二次结构和三级结构的非常微小的变化。单链,甘露醇/水,海藻糖/水和蔗糖/水中单链和双链形式蛋白质催化结构域的分子动力学模拟和对比结构分析,蔗糖/水呈现出三种渗透物的稳定作用在TC-TNK上,可以通过围绕非极性和芳族残基的这些分子的优先积累来诱导,也就是说,通过优先排除效应稳定SC-TNK的较少的水 - 疏水性残余物的相互作用。 (c)2019 Elsevier B.v.保留所有权利。

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