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9. Structure and function of vanadium haloperoxidases

13. Micro XAFS Study on Vanadium in Ascidians Alive Blood Cells Investigated by Fluorescence Scanning X-Ray Microscopy at ID21 at ESRF.

24. Accumulation of vanadium during embryogenesis in the vanadium-rich ascidian, Ascidia gemmata.

25. Observations on the ultrastructure of the test cell of Ciona robusta, with special reference to the localization of vanadium and iron.

29. A novel interaction of cGMP-dependent protein kinase I with troponin T.

30. Cloning and characterization of a novel human phosphodiesterase that hydrolyzes both cAMP and cGMP (PDE10A).

31. Advances in research on the accumulation, redox behavior, and function of vanadium in ascidians

35. LABELING OF FISH TISSUE WITH THE ACTIVABLE ELEMENT SAMARIUM

39. Participation of thioredoxin in the V(V)-reduction reaction by Vanabin2.

40. Metal ion selectivity of the vanadium(V)-reductase Vanabin2.

41. Metal-binding domains and the metal selectivity of the vanadium(IV)-binding protein VBP-129 in blood plasma.

42. Differential gene regulation by V(IV) and V (V) ions in the branchial sac, intestine, and blood cells of a vanadium-rich ascidian, Ciona intestinalis.

43. Identification of a novel vanadium-binding protein by EST analysis on the most vanadium-rich ascidian, Ascidia gemmata.

44. A novel vanadium transporter of the Nramp family expressed at the vacuole of vanadium-accumulating cells of the ascidian Ascidia sydneiensis samea.

45. Identification and biochemical analysis of a homolog of a sulfate transporter from a vanadium-rich ascidian Ascidia sydneiensis samea.

46. Characterization of vanadium-binding sites of the vanadium-binding protein Vanabin2 by site-directed mutagenesis.

47. Self-contained induction of neurons from human embryonic stem cells.

48. Human GPM6A is associated with differentiation and neuronal migration of neurons derived from human embryonic stem cells.

49. A novel vanadium reductase, Vanabin2, forms a possible cascade involved in electron transfer.

50. Inhibition of mouse GPM6A expression leads to decreased differentiation of neurons derived from mouse embryonic stem cells.

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