首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Purification, characterization, cloning and structural analysis of Crocodylus siamensis ovotransferrin for insight into functions of iron binding and autocleavage
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Purification, characterization, cloning and structural analysis of Crocodylus siamensis ovotransferrin for insight into functions of iron binding and autocleavage

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Abstract Ovotransferrin (OTf), the major protein constituent of egg white, is of great interest due to its pivotal role in biological iron transport and storage processes and its spontaneous autocleavage into peptidic fragments with alternative biological properties, such as antibacterial and antioxidant activities. However, despite being well-investigated in avian, a detailed elucidation of the structure-function relationship of ovotransferrins in the closely related order of Crocodilia has not been reported to date. In this study, electron paramagnetic resonance (EPR) confirmed the presence of two spectroscopically distinct ferric iron binding sites in Crocodylus siamensis OTf (cOTf), but implied a five-fold lower quantity of bound iron than in hen OTf (hOTf). In addition, quantitative estimation of free sulfhydryl groups revealed slight differences to hOTf. To gain a better structural understanding of cOTf, we found a cOTf gene consisting of an open reading frame of 2040bp and encoding a protein of 679 amino acids. In silico prediction of the three-dimensional structure of cOTf and comparison with hOTf revealed four evolutionarily conserved iron-binding sites in both N- and C-lobes, as well as the presence of only 13 of the 15 disulfide bonds in hOTf. This evolutionary loss of disulfide linkages in conjunction with the lack of hydrogen bonding from a dilysine trigger in the C-lobe are presumed to affect the iron binding and autocleavage character of cOTf. As a result, cOTf may be capable of exerting a more diverse array of functions compared to its avian counterparts; for instance, ion buffering, antioxidant and antimicrobial activities. ]]>
机译:<![cdata [ 抽象 Ovotransferrin(OTF),蛋白的主要蛋白质成分,由于其关键作用,具有很大的兴趣生物铁运输和储存过程及其自发性高沉积成具有替代生物特性的肽片段,例如抗菌和抗氧化活性。然而,尽管在禽类中进行了良好调查,但迄今尚未报告迄今为止在鳄鱼密切相关秩序中进行了ofotransferrins结构功能关系的详细阐明。在本研究中,电子顺磁共振(EPR)证实了在 rocodylus siamensis Otf(Cotf)中存在两种光谱上不同的铁合铁粘合位点,但暗示了五倍的界限熨斗比在母鸡OTF(hotf)。此外,游离巯基的定量估计显示出与热线的微小差异。为了获得对COTF的更好的结构理解,我们发现了一种COTF基因,由2040的开放阅读框架组成,并编码679个氨基酸的蛋白质。 在硅中:斜体>斜体>与热线的三维结构的预测和Hotf的比较显示了N-和c-叶片中的四种进化保守的铁结合位点,以及仅存在的存在在HotF中的15个二硫键中的13。推测,这种与缺乏来自C-叶中的含有C-叶碱触发的氢键合的二硫键的进化损失以影响COTF的铁结合和自闭症性质。结果,与其禽道的同行相比,COTF可能能够施加更多样化的功能阵列;例如,离子缓冲,抗氧化剂和抗菌活性。 ]]>

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