首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Isolation and characterization of the iron-binding properties of a primitive monolobal transferrin from Ciona intestinalis
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Isolation and characterization of the iron-binding properties of a primitive monolobal transferrin from Ciona intestinalis

机译:原始Ciona intestinalis的单叶转铁蛋白的铁结合特性的分离和表征

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摘要

Transferrins are bilobal glycoproteins responsible for iron binding, transport, and delivery in many higher organisms. The two homologous lobes of transferrins are thought to have evolved by gene duplication of an ancestral monolobal form. In the present study, a 37.7-kDa primitive monolobal transferrin (nicatransferrin, or nicaTf) from the serum of the model ascidian species Ciona intestinalis was isolated by using an immobilized iron-affinity column and characterized by using mass spectrometry and N-terminal sequencing. The protein binds one equivalent of iron(III) and exhibits an electron paramagnetic resonance spectrum that is anion-dependent. The UV/vis spectrum of nicaTf has a shoulder at 330 nm in both the iron-depleted and the iron-replete forms, but does not display the approximately 460 nm tyrosine-to-iron charge transfer band common to vertebrate serum transferrins under the conditions investigated. This result suggests that iron may adopt a different binding mode in nicaTf compared with the more highly evolved transferrin proteins. This difference in binding mode could have implications for the physiological role of the protein in the ascidian. The genome of C. intestinalis has genes for both a monolobal and a bilobal transferrin, and the sequences of both proteins are discussed in light of the known features of vertebrate serum transferrins as well as other transferrin homologs.
机译:转铁蛋白是负责许多高级生物中铁结合,转运和递送的双叶糖蛋白。认为转铁蛋白的两个同源叶是通过祖先单叶形式的基因复制而进化的。在本研究中,通过使用固定化的铁亲和柱从模型海生种Ciona intestinalis的血清中分离出37.7 kDa的原始单叶转铁蛋白(nicatransferrin或nicaTf),并通过质谱和N端测序对其进行了表征。该蛋白质结合一当量的铁(III),并显示出阴离子依赖性的电子顺磁共振波谱。在缺铁和缺铁两种形式下,nicaTf的UV / vis光谱在330 nm处具有肩峰,但在此条件下,没有显示脊椎动物血清转铁蛋白共有的约460 nm酪氨酸-铁电荷转移带调查。该结果表明,与进化程度更高的转铁蛋白相比,铁在nicaTf中可能采用不同的结合方式。结合模式的这种差异可能对蛋白质在海鞘中的生理作用有影响。肠弯曲杆菌的基因组具有单叶和双叶运铁蛋白的基因,并且根据脊椎动物血清运铁蛋白以及其他运铁蛋白同系物的已知特征讨论了这两种蛋白的序列。

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