Affiliation:
1. Department of Plant Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EA, U.K.
Abstract
The aquatic monocotyledonous plant Spirodela polyrhiza was labelled with [32P]Pi for short periods under non-equilibrium conditions. An InsP6 fraction was obtained and dissected by using enantiospecific (enzymic) and non-enantiospecific (chemical) means to determine the relative labelling of individual phosphate substituents on the inositol ring of InsP6. Phosphates in positions D-1, -2, -3, -4, -5 and -6 contained approx. 21%, 32–39%, 9–10%, 14–16%, 19–23% and 16–18% of the label respectively. We conclude from the foregoing, together with identities [described in the preceding paper, Brearley and Hanke (1996) Biochem. J. 314, 215–225] of inositol phosphates found in this plant at a developmental stage associated with massive accumulation of InsP6, that synthesis of InsP6 from myo-inositol proceeds according to the sequence Ins3P → Ins(3,4)P2 → Ins(3,4,6)P3 → Ins(3,4,5,6)P4 → Ins(1,3,4,5,6)P5 → Ins P6 in Spirodela polyrhiza. These results represent the first description of the synthetic sequence to InsP6 in the plant kingdom and the only comprehensive description of endogenous inositol phosphates in any plant tissue. The sequence described differs from that reported in the slime mould Dictyostelium discoideum.
Subject
Cell Biology,Molecular Biology,Biochemistry
Cited by
90 articles.
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