Abstract

c-Jun N-terminal kinase (JNK)-mediated cell signaling pathways are regulated endogenously in part by protein-protein interactions with glutathione S-transferase P1-1 (GSTP1-1) (). Using purified recombinant proteins, combined with fluorescence resonance energy transfer technology, we have found that the C terminus of JNK is critical to the interaction with GSTP1-1. The apparent K(d) for full-length JNK was 188 nm and for a C-terminal fragment (residues 200-424) 217 nm. An N-terminal fragment (residues 1-206) did not bind to GSTP1-1. Increased expression of the C-terminal JNK fragment in a tetracycline-inducible transfected NIH3T3 cell line produced a concentration-dependent increase in the kinase activity of JNK under normal, unstressed growth conditions indicating a dominant-negative effect. This suggests that the fragment can compete with endogenous full-length functional JNK resulting in dissociation of the GSTP1-1-JNK interaction and concomitant JNK enzyme activation. By using an antibody to hemagglutinin-tagged C-JNK, a concentration-dependent co-immunoprecipitation of GSTP1-1 was achieved. These data provide evidence for direct interactions between the C-terminal of JNK and GSTP1-1 and a rationale for considering GSTP1-1 as a critical ligand-binding protein with a role in regulating kinase pathways.

Highlights

  • C-Jun N-Terminal kinase (JNK),1 or stress activated kinase, is a member of the mitogen activated stress kinase family (MAPK), which includes extracellular signal regulated kinase and p38-MAPK

  • We have carried out a series of studies to show that glutathione S-transferase P1–1 (GSTP1–1) can act as a ligand-binding protein and an endogenous switch for the control of the catalytic activity of JNK1 (1, 10)

  • This has led to other studies implicating that GSTP1–1 is in control of apoptosis (20)

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Summary

EXPERIMENTAL PROCEDURES

Protein Purification—Recombinant JNK1 protein was expressed in Escherichia coli. The polymerase chain reaction product was constructed with a leader His-tag, digested with NdeI and BamHI, purified, and ligated into NdeI-digested, BamHI-digested, and phosphatase-treated pET-15b to create JNK.pET-15b. The purified protein was homogeneous as judged by the single polypeptide band of the predicted Mr on silver-stained SDS-polyacrylamide gels (data not shown). Both the C-terminal and N-terminal truncated proteins expressed in E. coli were found mainly in the insoluble fraction of the bacterial extracts. The GSTP1–1 construct was made by direct digestion of GSTP1–1 from PCR2.1(ϩ) with HindIII and XhoI followed by cloning into pET21 vector previously treated with HindIII and XhoI This was expressed in E. coli, and protein was purified using GSH affinity chromatography.

RESULTS
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