Identification of a novel fluorophore, xanthurenic acid 8- O -β- D -glucoside in human brunescent cataract

Shirao, Etsuko ; Ando, Kanako ; Inoue, Amane ; Shirao, Yutaka ; Balasubramanian, Dorairajan (2001) Identification of a novel fluorophore, xanthurenic acid 8- O -β- D -glucoside in human brunescent cataract Experimental Eye Research, 73 (4). pp. 421-431. ISSN 0014-4835

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Official URL: http://linkinghub.elsevier.com/retrieve/pii/S00144...

Related URL: http://dx.doi.org/10.1006/exer.2001.1051

Abstract

We have identified the chemical structure of a novel protein-unbound fluorescent glucoside (Fl-Glc), found to be far more abundant in the human brunescent cataractous lens nuclei than in non-brunescent ones. Our earlier experiments showed that long-term incubation of the protein-free filtrate of non-brunescent cataractous nuclei generated increasing amounts of a particular yet to be characterized fluorophore (Fl-X). High performance liquid chromatography (HPLC) analyses revealed Fl-X and Fl-Glc to be identical. HPLC-electrospray ionization-mass spectrometry (HPLC-ESI-MS) disclosed the molecular weights (MW) of Fl-X and its β-glucosidase-digest (Fl-X-aglycon) to be 367 and 205, respectively. Fl-X-aglycon and authentic xanthurenic acid (MW = 205) not only eluted at exactly the same retention time on HPLC but also revealed their protonated ions at the same m / z of 206.1 by positive ion analysis on HPLC-ESI-MS. These results suggest that Fl-X ( = Fl-Glc) is a β-glucoside of xanthurenic acid. Fl-Glc was finally identified as xanthurenic acid 8- O -β- D -glucoside because the retention times of both completely agreed with three kinds of HPLC conditions.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:Fluorophore; Brunescent Cataract; High-performance Liquid Chromatography; Glucoside; 3-hydroxykynurenine O-β-glucoside; Xanthurenic Acid; Mass Spectrometry
ID Code:1263
Deposited On:04 Oct 2010 07:58
Last Modified:11 Jan 2011 08:54

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