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PMID: 2388696 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Reversible inactivation of K+ channels of Vicia stomatal guard cells following the photolysis of caged inositol 1,4,5-trisphosphate.

Nature ·Vol. 346 ·No. 6286 ·1990-08-23 ·Pages 766-9

Blatt MR, Thiel G, Trentham DR

Abstract

RECENT investigations suggest that cytoplasmic D-myo-inositol 1,4,5-trisphosphate (InsP3) functions as a second messenger in plants, as in animals, coupling environmental and other stimuli to intracellular Ca2+ release. Cytoplasmic levels of InsP3 and the turnover of several probable precursors in plants are affected by physiological stimuli--including light, osmotic stress and the phytohormone indoleacetic acid--and InsP3 activates Ca2+ channels and Ca2+ flux across plant vacuolar and microsomal membranes. Complementary data also link changes in cytoplasmic free Ca2+ to several physiological responses, notably in guard cells which regulate gas exchange through the stomatal pores of higher plant leaves. Recent evidence indicates that guard cell K+ channels and, hence, K+ flux for stomatal movements may be controlled by cytoplasmic Ca2+. So far, however, direct evidence of a role for InsP3 in signalling in plants has remained elusive. Here we report that InsP3 released from an inactive, photolabile precursor, the P5-1-(2-nitrophenyl)ethyl ester of InsP3 (caged InsP3) reversibly inactivates K+ channels thought to mediate K+ uptake by guard cells from Vicia faba L. while simultaneously activating an apparently time-independent, inward current to depolarize the membrane potential and promote K+ efflux through a second class of K+ channels. The data are consistent with a transient rise in cytoplasmic free Ca2+ and demonstrate that intact guard cells are competent to use InsP3 in signal cascades controlling ion flux through K+ channels.

MeSH Terms
Calcium/metabolism Cytoplasm/metabolism Electrophysiology/methods Inositol 1,4,5-Trisphosphate/analogs & derivatives,metabolism Kinetics Microelectrodes Photolysis Plant Physiological Phenomena Potassium/metabolism Potassium Channels/physiology Second Messenger Systems
Chemicals
Potassium Channels inositol 1,4,5-trisphosphate 1-(2-nitrophenyl)ethyl ester Inositol 1,4,5-Trisphosphate Potassium Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Blatt M R
Botany School, University of Cambridge, UK.
Thiel G
Trentham D R
Article Info
Journal
Nature
Abbr.
Nature
ISSN
0028-0836
Published
1990-08-23
Pages
766-9
Language
English
Region
England
NLM ID
0410462
Subset
IM
Corrections
CommentIn
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