Temporal and spatial activation of caspase-like enzymes induced by self-incompatibility in Papaver pollen

  1. Maurice Bosch and
  2. Vernonica E. Franklin-Tong*
  1. School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom
  1. Edited by Jeffrey L. Dangl, University of North Carolina, Chapel Hill, NC, and approved September 24, 2007 (received for review June 21, 2007)

Abstract

Caspase-like proteases are universal mediators of programmed cell death (PCD). Because plants have no caspase homologs, establishing the nature of their caspase-like activities is of considerable importance to our understanding of PCD in plants. Caspase-3, displaying DEVD specificity, is a key executioner caspase in animal cells. Self-incompatibility (SI) is an important mechanism to prevent self-fertilization and inbreeding in higher plants by inhibiting incompatible pollen. In Papaver rhoeas, SI activates a caspase-3-like/DEVDase activity in incompatible pollen that plays a pivotal role in regulating PCD. Here we characterize the SI-induced caspase-like activities in detail; our work provides insights into the temporal and spatial activation of plant caspase-like enzymes. We show that SI also activates a VEIDase and a LEVDase and that the VEIDase plays a role in SI-induced PCD. The DEVDase and VEIDase are activated remarkably rapidly: detectable within 1–2 h after SI induction; the LEVDase activity peaks later. Importantly, we show live-cell imaging of a DEVDase activity in a higher plant cell; the SI-activated DEVDase has a cytosolic and nuclear localization. We also demonstrate that SI induces a rapid and substantial cytosolic acidification that matches the in vitro pH optima for the SI-induced caspase activities. Because both cytosolic acidification and nuclear caspase localization are observed during apoptosis in animal cells, our data provide striking parallels between SI-induced PCD and apoptosis in animal cells.

Footnotes

  • *To whom correspondence should be addressed. E-mail: V.E.Franklin-Tong{at}bham.ac.uk
  • Author contributions: M.B. and V.E.F.-T. designed research; M.B. performed research; M.B. analyzed data; and M.B. and V.E.F.-T. wrote the paper.

  • The authors declare no conflict of interest.

  • This article is a PNAS Direct Submission.

  • This article contains supporting information online at www.pnas.org/cgi/content/full/0705826104/DC1.

  • Abbreviations:
    AMC,
    7-amino-4-trifluoromethyl coumarin;
    BCECF,
    2′-7′-bis(carboxyethyl)-5(6)-carboxyfluorescein;
    CR,
    cresyl violet;
    GC,
    generative cell;
    MCA,
    4-methyl-coumaryl-7-amide;
    PCD,
    programmed cell death;
    [pH]i,
    intracellular cytosolic pH;
    SI,
    self-incompatibility;
    VN,
    vegetative nucleus.
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