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Vanadium K-edge X-ray Absorption Spectroscopy Reveals Species Differences Within the Same Ascidian Genera. A Comparison of Whole Blood from Ascidia Nigra and Ascidia Ceratodes

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 1998 Sep 12
PMID 9733743
Citations 2
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Abstract

Vanadium K-edge x-ray absorption spectroscopy (XAS) was used to examine whole blood preparations from the tunicates Ascidia nigra and Ascidia ceratodes. Each XAS spectrum exhibits a rising edge inflection near 5480 eV characteristic of vanadium(III) and an intensity maximum at 5484.0 eV. In A. ceratodes blood cells, intrinsic aquo-VSO4+ complex ion is indicated by an inflection feature at 5476 eV in the first derivative of the vanadium K-edge XAS spectrum, but this feature is notably absent from the first derivative of the vanadium K-edge spectrum of blood cells from A. nigra. A strong pre-edge feature at 5468.6 eV also uniquely distinguishes the vanadium K-edge XAS spectrum of A. nigra blood cells, implying that vanadyl ion represents approximately 25% of the endogenous vanadium. However, the energy position of the rising edge inflection of the vanadium K-edge XAS spectrum of A. nigra (5479.5 eV) is 1 eV lower than that of A. ceratodes (5480.5 eV), the reverse of any expected shift arising from the endogenous vanadyl ion. Thus, in contrast to A. ceratodes, a significant fraction of the blood cell vanadium(III) in A. nigra is apparently in a ligation environment substantially different from that provided by water. These novel species-related differences may have taxonomic significance.

Citing Articles

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Frank P, Carlson R, Carlson E, Hedman B, Hodgson K J Inorg Biochem. 2020; 205:110991.

PMID: 31945647 PMC: 7033024. DOI: 10.1016/j.jinorgbio.2019.110991.


Structure and dynamics of metalloproteins in live cells.

Cook J, Penner-Hahn J, Stemmler T Methods Cell Biol. 2009; 90:199-216.

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