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Death-associated protein 4 binds MST1 and augments MST1-induced apoptosis
Yenshou Lin1, Andrei Khokhlatchev, Daniel Figeys
1Diabetes Unit, Massachusetts General Hospital, Boston 02114, USA.
Abstract:
The protein kinase MST1 is proapoptotic when overexpressed in an active form, however, its physiologic regulation and cellular targets are unknown. An overexpressed inactive MST1 mutant associates in COS-7 cells with an endogenous 761-amino acid polypeptide known as "death-associated protein 4" (DAP4). The DAPs are a functionally heterogeneous array of polypeptides previously isolated by Kimchi and colleagues (Kimchi, A. (1998) Biochim. Biophys. Acta 1377, F13-F33 in a screen for elements involved in the interferon gamma-induced apoptosis of HeLa cells. DAP4, which is encoded by a member of a vertebrate-only gene family, contains no identifiable domains, but is identical over its amino-terminal 488 amino acids to p52(rIPK), a putative modulator of protein kinase R. DAP4 is a widely expressed, constitutively nuclear polypeptide that homodimerizes through its amino terminus and binds MST1 through its carboxyl-terminal segment. MST1 is predominantly cytoplasmic, but cycles continuously through the nucleus, as evidenced by its rapid accumulation in the nucleus after addition of the Crm1 inhibitor, leptomycin B. Overexpression of DAP4 does not cause apoptosis, however, coexpression of DAP4 with a submaximal amount of MST1 enhances MST1-induced apoptosis in a dose-dependent fashion. DAP4 is not significantly phosphorylated by MST1 nor does it alter MST1 kinase activity in vivo or in vitro. MST1-induced apoptosis is suppressed by a dominant interfering mutant of p53. MST1 is unable to directly phosphorylate p53, however, DAP4 binds endogenous and recombinant p53. DAP4 may promote MST1-induced apoptosis by enabling colocalization of MST with p53.
Insights
Death-associated protein 4 (DAP4) enhances MST1-induced apoptosis by facilitating MST1 and p53 colocalization. DAP4 binds p53, promoting apoptosis when MST1 is present.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- The serine/threonine kinase MST1 is known to induce apoptosis when overexpressed.
- However, its physiological regulation and specific cellular targets remain largely unknown.
- Death-associated proteins (DAPs) are involved in interferon-gamma-induced apoptosis.
Purpose of the Study:
- To investigate the physiological regulation and cellular targets of MST1.
- To elucidate the role of death-associated protein 4 (DAP4) in MST1-mediated apoptosis.
Main Methods:
- Co-immunoprecipitation assays to study protein interactions in COS-7 cells.
- Western blotting to detect protein expression and phosphorylation.
- Analysis of apoptosis induction via co-expression studies and p53 interactions.
Main Results:
- An inactive MST1 mutant was found to associate with DAP4, a 761-amino acid polypeptide.
- DAP4, a constitutively nuclear protein, homodimerizes and binds MST1.
- Co-expression of DAP4 enhanced MST1-induced apoptosis in a dose-dependent manner.
- DAP4 binds p53, and this interaction appears crucial for MST1-induced apoptosis, as MST1 cannot directly phosphorylate p53.
Conclusions:
- DAP4 promotes MST1-induced apoptosis, likely by facilitating the colocalization of MST1 with p53.
- DAP4 acts as a scaffold, bringing MST1 and p53 together to enhance the apoptotic signaling pathway.