首页> 外文期刊>Biochimica et biophysica acta. Gene structure and expression >VanabinP, a novel vanadium-binding protein in the blood plasma of an ascidian, Ascidia sydneiensis samea
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VanabinP, a novel vanadium-binding protein in the blood plasma of an ascidian, Ascidia sydneiensis samea

机译:VanabinP,一种新的海鞘海鞘亚科的血浆中的钒结合蛋白

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Some ascidians accumulate high levels of the transition metal vanadium in their blood cells. The process of vanadium accumulation has not yet been elucidated. In this report, we describe the isolation and cDNA cloning of a novel vanadium-binding protein, designated as VanabinP, from the blood plasma of the vanadium-rich ascidian, Ascidia sydneiensis samea. The predicted amino acid sequence of VanabinP was highly conserved and similar to those of other Vanabins. The N-terminus of the mature form of VanabinP was rich in basic amino acid residues. VanabinP cDNA was originally isolated from blood cells, as were the other four Vanabins. However, Western blot analysis revealed that the VanabinP protein was localized to the blood plasma and was not detectable in blood cells. RT-PCR analysis and in situ hybridization indicated that the VanabinP gene was transcribed in some cell types localized to peripheral connective tissues of the alimentary canal, muscle, blood cells, and a portion of the branchial sac. Recombinant VanabinP bound a maximum of 13 vanadium(IV) ions per molecule with a K-d of 2.8 x 10(-5) M, These results suggest that VanabinP is produced in several types of cell, including blood cells, and is immediately secreted into the blood plasma where it functions as a vanadium(IV) carrier. (c) 2005 Elsevier B.V. All rights reserved.
机译:一些海鞘在其血细胞中积聚高水平的过渡金属钒。钒的积累过程尚未阐明。在此报告中,我们描述了从富含钒的海鞘亚述亚种的血浆中分离并命名为VanabinP的新型钒结合蛋白的cDNA克隆。 VanabinP的预测氨基酸序列高度保守,与其他Vanabins相似。 VanabinP成熟形式的N末端富含碱性氨基酸残基。 VanabinP cDNA最初是从血细胞中分离出来的,其他四个Vanabins也是如此。但是,蛋白质印迹分析表明,VanabinP蛋白位于血浆中,在血细胞中无法检测到。 RT-PCR分析和原位杂交表明,VanabinP基因在某些类型的细胞中转录,这些细胞类型位于消化道,肌肉,血细胞和部分branch囊的周围结缔组织中。重组VanabinP每个分子最多结合13个钒(IV)离子,Kd为2.8 x 10(-5)M,这些结果表明VanabinP在多种类型的细胞(包括血细胞)中产生,并立即分泌到细胞中。血浆中用作钒(IV)载体的位置。 (c)2005 Elsevier B.V.保留所有权利。

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