Multiple Signaling Pathways in Gene Expression during Sugar Starvation. Pharmacological Analysis of din Gene Expression in Suspension-Cultured Cells of Arabidopsis

Author:

Fujiki Yuki1,Ito Masaki1,Nishida Ikuo1,Watanabe Akira1

Affiliation:

1. Department of Biological Sciences, Graduate School of Science, University of Tokyo, Bunkyo-ku, Hongo, Tokyo 113–0033, Japan

Abstract

Abstract We have identified many dark-inducible (din) genes that are expressed in Arabidopsis leaves kept in the dark. In the present study we addressed the question of how plant cells sense the depletion of sugars, and how sugar starvation triggersdin gene expression in suspension-cultured cells of Arabidopsis. Depletion of sucrose in the medium triggered marked accumulation of din transcripts. Suppression ofdin gene expression by 2-deoxy-Glc, and a non-suppressive effect exerted by 3-O-methyl-Glc, suggested that sugar-repressible expression of din genes is mediated through the phosphorylation of hexose by hexokinase, as exemplified in the repression of photosynthetic genes by sugars. We have further shown that the signaling triggered by sugar starvation involves protein phosphorylation and dephosphorylation events, and have provided the first evidence that multiple pathways of protein dephosphorylation exist in sugar starvation-induced gene expression. An inhibitor of serine/threonine protein kinase, K-252a, inhibiteddin gene expression in sugar-depleted cells. Okadaic acid, which may preferentially inhibit type 2A protein phosphatases over type 1, enhanced the transcript levels of all dingenes, except din6 and din10, under sugar starvation. Conversely, a more potent inhibitor of type 1 and 2A protein phosphatases, calyculin A, increased transcripts fromdin2 and din9, but decreased those from other din genes, in sugar-depleted cells. On the other hand, calyculin A, but not okadaic acid, completely inhibited the gene expression of chlorophyll a/b-binding protein under sugar starvation. These results indicate that multiple signaling pathways, mediated by different types of protein phosphatases, regulate gene expression during sugar starvation.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

Reference44 articles.

1. Evolution of light-regulated plant promoters.;Argüello-Astorga;Annu Rev Plant Physiol Plant Mol Biol,1998

2. A protocol for transient gene expression in Arabidopsis thaliana protoplasts isolated from cell suspension cultures.;Axelos;Plant Physiol Biochem,1992

3. Evidence for a senescence-associated gene induced by darkness.;Azumi;Plant Physiol,1991

4. Induction of a carbon-starvation-related proteolysis in whole maize plants submitted to light/dark cycles and to extended darkness.;Brouquisse;Plant Physiol,1998

5. Asparagine metabolism and nitrogen distribution during protein degradation in sugar-starved maize root tips.;Brouquisse;Planta,1992

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