Abstract

Decreased phosphorylation of focal adhesion kinase and paxillin is associated with loss of focal adhesions and stress fibers and precedes the onset of apoptosis (van de Water, B., Nagelkerke, J. F., and Stevens, J. L. (1999) J. Biol. Chem. 274, 13328-13337). The cortical actin cytoskeletal network is also lost during apoptosis, yet little is known about the temporal relationship between altered phosphorylation of proteins that are critical in the regulation of this network and their potential cleavage by caspases during apoptosis. Adducins are central in the cortical actin network organization. Cisplatin caused apoptosis of renal proximal tubular epithelial cells, which was associated with the cleavage of alpha-adducin into a 74-kDa fragment; this was blocked by a general caspase inhibitor benzyloxycarbonyl-Val-Ala-Asp-fluoromethyl ketone (z-VAD-fmk). Hemagglutinin-tagged human alpha-adducin was cleaved into a similar 74-kDa fragment by caspase-3 in vitro but not by caspase-6 or -7. Asp-Arg-Val-Asp(29)-Glu, Asp-Ile-Val-Asp(208)-Arg, and Asp-Asp-Ser-Asp(633)-Ala were identified as the principal caspase-3 cleavage sites; Asp-Asp-Ser-Asp(633)-Ala was key in the formation of the 74-kDa fragment. Cisplatin also caused an increased phosphorylation of alpha-adducin and gamma-adducin in the MARCKS domain that preceded alpha-adducin cleavage and was associated with loss of adducins from adherens junctions; this was not affected by z-VAD-fmk. In conclusion, the data support a model in which increased phosphorylation of alpha-adducin due to cisplatin leads to dissociation from the cytoskeleton, a situation rendered irreversible by caspase-3-mediated cleavage of alpha-adducin at Asp-Asp-Ser-Asp(633)-Ala.

Highlights

  • Decreased phosphorylation of focal adhesion kinase and paxillin is associated with loss of focal adhesions and stress fibers and precedes the onset of apoptosis

  • The cortical actin cytoskeletal network is lost during apoptosis, yet little is known about the temporal relationship between altered phosphorylation of proteins that are critical in the regulation of this network and their potential cleavage by caspases during apoptosis

  • Since adducin family members are important regulators of the cortical F-actin cytoskeletal network, it seemed possible that loss of cell-cell contacts was related to ␣-adducin cleavage. To test this hypothesis we evaluated the changes in the localization of ␣-adducin, ␥-adducin, as well as fodrin with the adherens junctions in rat proximal tubule epithelial (RPTE) cells after exposure to cisplatin

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Summary

EXPERIMENTAL PROCEDURES

Dulbecco’s modified Eagle’s medium/Ham’s F-12, ␣-modified minimal essential medium with ribonucleosides and deoxyribonucleosides, penicillin/streptomycin/amphotericin, and trypsin/EDTA were from Life Technologies, Inc. AcylAsp-Glu-Val-Asp-7-amino-4-methylcoumarin (Ac-DEVD-AMC) was from Research Biochemicals International (Natick, MA). An expression vector for hemagglutinin (HA)-tagged human ␣-adducin (amino acids 1–737; pEF-BOS-HA-␣-adducin) was kindly provided by Dr K. For site-directed mutagenesis, the ␣-adducin-coding region was subcloned into pZErO (Invitrogen) using KpnI. For mutation by polymerase chain reaction of amino acid residue D to A at the various caspase-3 cleavage sites in human ␣-adducin, the QuickChange mutagenesis kit (Stratagene) was used with the following primers: Asp Ala, forward primer 5ЈGGTACTTCGACCGAGTAGCTGAGAACAACCC-3Ј and reverse primer 5Ј-GGGTTGTTCTCCAGCTACTCGGTCGAAGTACC-3Ј; Asp208 Ala, forward primer 5Ј-GGTACTTCGACCGAGTAGCTGAGAACAACCC-3Ј and reverse primer 5Ј-GGGTTGTTCTCAGCTACTCGGTCGAAGTACC-3Ј; Asp633 Ala, forward primer 5Ј-GGAGATGACAGTGCTGCTGCCACCTTTAAGC-3Ј and reverse primer 5Ј-GCTTAAAGGTGGCAGCAGCACTGTCATCTCC-3Ј. Mutated ␣-adducin was subcloned back into pEF-BOS. Correct expression of HA-␣-adducin and the different Asp 3 Ala mutants was checked by transient overexpression in COS1 cells followed Western blotting and immunofluorescent staining

Cell Culture and Treatment
Determination of Cell Death
Preparation of Cytoskeletal and Soluble Cellular Fractions
Gel Electrophoresis and Immunoblotting
Immunofluorescence and Imaging Techniques
RESULTS
DISCUSSION
Full Text
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