Abscisic acid maintains S-type anion channel activity in ATP-depleted Vicia faba guard cells.

Abstract:

:The plant hormone abscisic acid (ABA) regulates important developmental and stress responses. Recent data show that ABA activates phosphorylation events, but whether dephosphorylation events are post-translationally regulated by ABA or whether these are constitutive remains unknown. Slow anion channels in the plasma membrane of guard cells have been proposed to play an important role during ABA-induced stomatal closing. Anion channels are deactivated by removal of cytosolic ATP. However, when guard cells were treated with ABA and depleted of ATP, anion currents remained active. Subsequent removal of extracellular ABA caused deactivation of currents. Deactivation of currents was reversed by reintroduction of cytosolic MgATP. These data show that anion channels are regulated by ABA even in the absence of cytosolic ATP required for kinase-induced phosphorylation events and that anion channel activity is maintained by ABA under conditions that favor dephosphorylation-induced deactivation. Furthermore, channel activation proceeded at high ATP concentrations with nanomolar cytosolic Ca2+ showing a Ca2+-independent final step in anion channel activation.

journal_name

FEBS Lett

journal_title

FEBS letters

authors

Schwarz M,Schroeder JI

doi

10.1016/s0014-5793(98)00526-2

subject

Has Abstract

pub_date

1998-05-29 00:00:00

pages

177-82

issue

3

eissn

0014-5793

issn

1873-3468

pii

S0014-5793(98)00526-2

journal_volume

428

pub_type

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