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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Molecular adaptation strategies to high temperature and thermal denaturation mechanism of the D-trehalose/D-maltose-binding protein from the hyperthermophilic archaeon Thermococcus litoralis.
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Molecular adaptation strategies to high temperature and thermal denaturation mechanism of the D-trehalose/D-maltose-binding protein from the hyperthermophilic archaeon Thermococcus litoralis.

机译:嗜热古细菌Thercococcus litoralis的D-海藻糖/ D-麦芽糖结合蛋白对高温和热变性机理的分子适应策略。

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摘要

The D-trehalose/D-maltose-binding protein (TMBP), a monomeric protein of 48 kDa, is one component of the trehalose and maltose uptake system. In the hyperthermophilic archaeon T. litoralis this is mediated by a protein-dependent ATP-binding cassette system transporter. The gene coding for a thermostable TMBP from the archaeon T. litoralis has been cloned, and the recombinant protein has been expressed in E. coli. The recombinant TMBP has been purified to homogeneity and characterized. It exhibits the same functional and structural properties as the native one. In fact, it is highly thermostable and binds both trehalose and maltose with high affinity. In this work we used differential scanning calorimetry studies together with a detailed analysis, at the molecular level, of the three-dimensional protein structure to shed light on the basis of the high thermostability exhibited by the recombinant TMBP from the archaeon T. litoralis. The obtained data suggest that the presence of trehalose does not changethe overall mechanism of the denaturation of this protein but it selectively modifies the stability of the TMBP structural domains.
机译:D-海藻糖/ D-麦芽糖结合蛋白(TMBP)是48 kDa的单体蛋白,是海藻糖和麦芽糖摄取系统的一个组成部分。在嗜热古细菌T. litoralis中,这是由蛋白质依赖性ATP结合盒系统转运蛋白介导的。已经克隆了编码来自古细菌T. litoralis的热稳定TMBP的基因,并且重组蛋白已经在大肠杆菌中表达。重组TMBP已纯化至均一并进行了表征。它表现出与天然相同的功能和结构特性。实际上,它是高度热稳定的,并且以高亲和力结合海藻糖和麦芽糖。在这项工作中,我们使用了差示扫描量热法研究,并在分子水平上对三维蛋白质结构进行了详细分析,以揭示古细菌T. litoralis的重组TMBP表现出的高热稳定性为基础。获得的数据表明,海藻糖的存在不会改变该蛋白质变性的总体机制,但是它选择性地修饰了TMBP结构域的稳定性。

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