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首页> 外文期刊>Journal of Insect Physiology >Hyperactive antifreeze proteins from longhorn beetles: Some structural insights
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Hyperactive antifreeze proteins from longhorn beetles: Some structural insights

机译:长角甲虫的超活性抗冻蛋白:一些结构见解

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This study reports on structural characteristics of hyperactive antifreeze proteins (AFPs) from two species of longhorn beetles. In Rhagium mordax, eight unique mRNAs coding for five different mature AFPs were identified from cold-hardy individuals. These AFPs are apparently homologues to a previously characterized AFP from the closely related species Rhagium inquisitor, and consist of six identifiable repeats of a putative ice binding motif TxTxTxT spaced irregularly apart by segments varying in length from 13 to 20 residues. Circular dichroism spectra show that the AFPs from both species have a high content of beta -sheet and low levels of alpha -helix and random coil. Theoretical predictions of residue-specific secondary structure locate these beta -sheets within the putative ice-binding motifs and the central parts of the segments separating them, consistent with an overall beta -helical structure with the ice-binding motifs stacked in a beta -sheet on one side of the coil. Molecular dynamics models based on these findings show that these AFPs would be energetically stable in a beta -helical conformation.Digital Object Identifier http://dx.doi.org/10.1016/j.jinsphys.2012.09.004
机译:这项研究报告了来自两种长角甲虫的高活性抗冻蛋白(AFP)的结构特征。在Rhogium mordax中,从耐寒性强的个体中鉴定出编码五个不同成熟AFP的八个独特mRNA。这些AFP显然是与以前密切相关的物种Rhagium inquisitor的先前表征的AFP的同源物,由推定的冰结合基序TxTxTxT的六个可识别重复组成,这些重复不规则地由长度在13到20个残基之间的片段隔开。圆二色性光谱表明,两种物种的AFP都具有高含量的β-sheet和低水平的α-螺旋和无规卷曲。残基特异性二级结构的理论预测将这些β-折叠定位在推定的冰结合基序内,并将这些部分分隔开来,将这些段分隔开来,这与整体的β-螺旋结构一致,而冰-结合基序堆叠在β-折叠中在线圈的一侧。基于这些发现的分子动力学模型表明,这些AFP在β螺旋构象上将是能量稳定的。数字对象标识符http://dx.doi.org/10.1016/j.jinsphys.2012.09.004

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