Abstract
Assimilatory nitrate reductase activity (NRA) in crude spinach leaf (Spinacia oleracea) extracts undergoes rapid changes following fluctuations in photosynthesis brought about by changes in external CO2 or by water stress (WM Kaiser, E Brendle-Behnisch [1991] Plant Physiol 96:363-367). A modulation of NRA sharing several characteristics (stability, response to Mg2+ or Ca2+, kinetic constants) with the in vivo modulation was obtained in vitro by preincubating desalted leaf extracts with physiological concentrations of Mg2+ and ATP (deactivating) or AMP (activating). When nitrate reductase (NR) was inactivated in vivo by illuminating leaves at the CO2 compensation point, it could be reactivated in vitro by incubating leaf extracts with AMP. For the in vitro inactivation, ATP could be replaced by GTP or UTP. Nonhydrolyzable ATP analogs (β, γ-imido ATP, β, γ-methyl-ATP) had no effect on NR, whereas γ-S-ATP caused an irreversible inactivation. This suggests that NR modulation involves ATP hydrolysis. In contrast to NR in crude leaf extracts, partially purified NR did not respond to ATP or AMP. ATP and AMP levels in whole leaf extracts changed in the way predicted by the modulation of NRA when leaves were transferred from photosynthesizing (low ATP/AMP) to photorespiratory (high ATP/AMP) conditions. Adenine nucleotide levels in leaves could be effectively manipulated by feeding mannose through the leaf petiole. NRA followed these changes as expected from the in vitro results. This suggests that cytosolic ATP/AMP levels are indeed the central link between NRA in the cytosol and photosynthesis in the chloroplast. Phosphorylation/dephosphorylation of NR or of NR-regulating protein factors is discussed as a mechanism for a reversible modulation of NR by ATP and AMP.
Full text
PDFSelected References
These references are in PubMed. This may not be the complete list of references from this article.
- Dancer J., Neuhaus H. E., Stitt M. Subcellular compartmentation of uridine nucleotides and nucleoside-5' -diphosphate kinase in leaves. Plant Physiol. 1990 Mar;92(3):637–641. doi: 10.1104/pp.92.3.637. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Gardeström P., Wigge B. Influence of Photorespiration on ATP/ADP Ratios in the Chloroplasts, Mitochondria, and Cytosol, Studied by Rapid Fractionation of Barley (Hordeum vulgare) Protoplasts. Plant Physiol. 1988 Sep;88(1):69–76. doi: 10.1104/pp.88.1.69. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Harris G. C., Cheesbrough J. K., Walker D. A. Effects of mannose on photosynthetic gas exchange in spinach leaf discs. Plant Physiol. 1983 Jan;71(1):108–111. doi: 10.1104/pp.71.1.108. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Jolly S. O., Tolbert N. E. NADH-Nitrate Reductase Inhibitor from Soybean Leaves. Plant Physiol. 1978 Aug;62(2):197–203. doi: 10.1104/pp.62.2.197. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Kadam S. S., Gandhi A. P., Sawhney S. K., Naik M. S. Inhibitor of nitrate reductase in the roots of rice seedlings and its effect on the enzyme activity in the presence of NADH. Biochim Biophys Acta. 1974 May 20;350(1):162–170. doi: 10.1016/0005-2744(74)90214-9. [DOI] [PubMed] [Google Scholar]
- Kaiser W. M., Brendle-Behnisch E. Rapid Modulation of Spinach Leaf Nitrate Reductase Activity by Photosynthesis : I. Modulation in Vivo by CO(2) Availability. Plant Physiol. 1991 Jun;96(2):363–367. doi: 10.1104/pp.96.2.363. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Kaiser W. M., Förster J. Low CO(2) Prevents Nitrate Reduction in Leaves. Plant Physiol. 1989 Nov;91(3):970–974. doi: 10.1104/pp.91.3.970. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Sanchez J., Heldt H. W. On the regulation of spinach nitrate reductase. Plant Physiol. 1990 Mar;92(3):684–689. doi: 10.1104/pp.92.3.684. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Solomonson L. P., Spehar A. M. Stimulation of cyanide formation by ADP and its possible role in the regulation of nitrate reductase. J Biol Chem. 1979 Apr 10;254(7):2176–2179. [PubMed] [Google Scholar]
- Wallace W. Purification and properties of a nitrate reductase-inactivating enzyme. Biochim Biophys Acta. 1974 Mar 21;341(1):265–276. doi: 10.1016/0005-2744(74)90087-4. [DOI] [PubMed] [Google Scholar]