Biological variability in the structures of diphosphoinositol polyphosphates in Dictyostelium discoideum and mammalian cells

Author:

ALBERT Claudia1,SAFRANY T. Stephen2,BEMBENEK E. Michael3,REDDY Komandla Malla4,REDDY K. Kishta4,FALCK J. R.4,BRÖCKER Martina5,SHEARS B. Stephen2,MAYR W. Georg1

Affiliation:

1. Universitäts-Krankenhaus Eppendorf, Institut für Physiologische Chemie, Abt. für Enzymchemie, Martinistr. 52, D-20246 Hamburg, Germany

2. Inositol Lipid Section, Laboratory of Signal Transduction, National Institute of Environmental Health Sciences, Research Triangle Park, NC 27709, U.S.A.

3. Medical Products Division, E.I. DuPont De Nemours and Co., 549 Albany Street, Boston MA 02118, U.S.A.

4. Departments of Biochemistry and Pharmacology, University of Texas Southwestern Medical Center, Dallas, TX 75235-9038, U.S.A.

5. University Hospital Bergmannsheil, Ruhr-University Bochum, Endocrinology Laboratory, House 10, D44789 Bochum, Germany

Abstract

Previous structural analyses of diphosphoinositol polyphosphates in biological systems have relied largely on NMR analysis. For example, in Dictyostelium discoideum, diphosphoinositol pentakisphosphate was determined by NMR to be 4- and/or 6-PPInsP5, and the bisdiphosphoinositol tetrakisphosphate was found to be 4,5-bisPPInsP4 and/or 5,6-bisPPInsP4 [Laussmann, Eujen, Weisshuhn, Thiel and Vogel (1996) Biochem. J. 315, 715-720]. We now describe three recent technical developments to aid the analysis of these compounds, not just in Dictyostelium, but also in a wider range of biological systems: (i) improved resolution and sensitivity of detection of PPInsP5 isomers by microbore metal-dye-detection HPLC; (ii) the use of the enantiomerically specific properties of a rat hepatic diphosphatase; (iii) chemical synthesis of enantiomerically pure reference standards of all six possible PPInsP5 isomers. Thus we now demonstrate that the major PPInsP5 isomer in Dictyostelium is 6-PPInsP5. Similar findings obtained using the same synthetic standards have been published [Laussmann, Reddy, Reddy, Falck and Vogel (1997) Biochem. J. 322, 31-33]. In addition, we show that 10-25% of the Dictyostelium PPInsP5 pool is comprised of 5-PPInsP5. The biological significance of this new observation was reinforced by our demonstration that 5-PPInsP5 is the predominant PPInsP5 isomer in four different mammalian cell lines (FTC human thyroid cancer cells, Swiss 3T3 fibroblasts, Jurkat T-cells and Chinese hamster ovary cells). The fact that the cellular spectrum of diphosphoinositol polyphosphates varies across phylogenetic boundaries underscores the value of our technological developments for future determinations of the structures of this class of compounds in other systems.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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