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1.
Cell Death Differ ; 11(2): 175-82, 2004 Feb.
Article in English | MEDLINE | ID: mdl-14576770

ABSTRACT

Plant embryogenesis is intimately associated with programmed cell death. The mechanisms of initiation and control of programmed cell death during plant embryo development are not known. Proteolytic activity associated with caspase-like proteins is paramount for control of programmed cell death in animals and yeasts. Caspase family of proteases has unique strong preference for cleavage of the target proteins next to asparagine residue. In this work, we have used synthetic peptide substrates containing caspase recognition sites and corresponding specific inhibitors to analyse the role of caspase-like activity in the regulation of programmed cell death during plant embryogenesis. We demonstrate that VEIDase is a principal caspase-like activity implicated in plant embryogenesis. This activity increases at the early stages of embryo development that coincide with massive cell death during shape remodeling. The VEIDase activity exhibits high sensitivity to pH, ionic strength and Zn(2+) concentration. Altogether, biochemical assays show that VEIDase plant caspase-like activity resembles that of both mammalian caspase-6 and yeast metacaspase, YCA1. In vivo, VEIDase activity is localised specifically in the embryonic cells during both the commitment and in the beginning of the execution phase of programmed cell death. Inhibition of VEIDase prevents normal embryo development via blocking the embryo-suspensor differentiation. Our data indicate that the VEIDase activity is an integral part in the control of plant developmental cell death programme, and that this activity is essential for the embryo pattern formation.


Subject(s)
Apoptosis , Body Patterning , Caspases/metabolism , Picea/embryology , Picea/enzymology , Seeds/cytology , Seeds/embryology , Caspase Inhibitors , Cell Extracts , Hydrogen-Ion Concentration , Picea/cytology , Protease Inhibitors/pharmacology , Seeds/enzymology , Sodium Chloride/pharmacology , Temperature , Zinc/pharmacology
2.
FEBS Lett ; 499(1-2): 97-100, 2001 Jun 15.
Article in English | MEDLINE | ID: mdl-11418120

ABSTRACT

The actin-depolymerising factor (ADF)/cofilin group of proteins are stimulus-responsive actin-severing proteins, members of which are regulated by reversible phosphorylation. The phosphorylation site on the maize ADF, ZmADF3, is Ser-6 but the kinase responsible is unknown [Smertenko et al., Plant J. 14 (1998) 187-193]. We have partially purified the ADF kinase(s) and found it to be calcium-regulated and inhibited by N-(6-aminohexyl)-[(3)H]5-chloro-1-naphthalenesulphonamide. Immunoblotting reveals that calmodulin-like domain protein kinase(s) (CDPK) are enriched in the purified preparation and addition of anti-CDPK to in vitro phosphorylation assays results in the inhibition of ADF phosphorylation. These data strongly suggest that plant ADF is phosphorylated by CDPK(s), a class of protein kinases unique to plants and protozoa.


Subject(s)
Fabaceae/enzymology , Microfilament Proteins/metabolism , Plant Proteins , Plants, Medicinal , Protein Kinases/metabolism , Zea mays , Actin Depolymerizing Factors , Animals , Blotting, Western , Destrin , Enzyme Inhibitors/pharmacology , Muscle, Skeletal , Phosphorylation/drug effects , Phosphoserine/metabolism , Protein Kinase Inhibitors , Protein Kinases/isolation & purification , Rabbits
3.
Plant J ; 25(2): 203-12, 2001 Jan.
Article in English | MEDLINE | ID: mdl-11169196

ABSTRACT

We have examined the interaction of recombinant lily pollen ADF, LlADF1, with actin and found that whilst it bound both G- and F-actin, it had a much smaller effect on the polymerization and depolymerization rate constants than the maize vegetative ADF, ZmADF3. An antiserum specific to pollen ADF, antipADF, was raised and used to localize pollen ADF in daffodil--a plant in which massive reorganizations of the actin cytoskeleton have been seen to occur as pollen enters and exits dormancy. We show, for the first time, an ADF decorating F-actin in cells that did not result from artificial increase in ADF concentration. In dehydrated pollen this ADF : actin array is replaced by actin : ADF rodlets and aggregates of actin, which presumably act as a storage form of actin during dormancy. In germinated pollen ADF has no specific localization, except when an adhesion is made at the tip where actin and ADF now co-localize. These activities of pollen ADF are discussed with reference to the activities of ZmADF3 and other members of the ADF/cofilin group of proteins.


Subject(s)
Actins/metabolism , Microfilament Proteins/metabolism , Pollen/metabolism , Actin Depolymerizing Factors , Destrin , Magnoliopsida/metabolism , Recombinant Proteins/metabolism
4.
Plant J ; 14(2): 187-93, 1998 Apr.
Article in English | MEDLINE | ID: mdl-9669865

ABSTRACT

Maize actin-depolymerizing factor, ZmADF, binds both G- and F-actin and enhances in vitro actin dynamics. Evidence from studies on vertebrate ADF/cofilin supports the view that this class of protein responds to intracellular and extracellular signals and causes actin reorganization. As a test to determine whether such signal-responsive pathways existed in plants, this study addressed the ability of maize ADF to be phosphorylated and the likely effects of such phosphorylation on its capacity to modulate actin dynamics. It is shown that maize ADF3 (ZmADF3) can be phosphorylated by a calcium-stimulated protein kinase present in a 40-70% ammonium sulphate fraction of a plant cell extract. Phosphorylation is shown to be on Ser6, which is only one of nine amino acids that are fully conserved among the ADF/cofilin proteins across distantly related species. In addition, an analogue of phosphorylated ZmADF3 created by mutating Ser6 to Asp6 (zmadf3-4) does not bind G- or F-actin and has little effect on the enhancement of actin dynamics. These results are discussed in context of the previously observed actin reorganization in root hair cells.


Subject(s)
Actins/metabolism , Calcium/physiology , Microfilament Proteins/metabolism , Protein Kinases/metabolism , Serine/metabolism , Zea mays/metabolism , Actin Depolymerizing Factors , Amino Acid Sequence , Destrin , Gelsolin/metabolism , Kinetics , Microfilament Proteins/genetics , Molecular Sequence Data , Mutagenesis, Site-Directed , Phosphorylation , Plant Extracts/metabolism , Protein Binding , Recombinant Proteins/metabolism
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