Abstract

NAD(P)H:quinone oxidoreductase 1 (NQO1) is a flavoprotein that protects cells against radiation and chemical-induced oxidative stress. Disruption of NQO1 gene in mice leads to increased susceptibility to myeloproliferative disease. In this report, we demonstrate that NQO1 controls the stability of myeloid differentiation factor C/EBPα against 20S proteasomal degradation during radiation exposure stress. Co-immunoprecipitation studies showed that NQO1, C/EBPα, and 20S all interacted with each other. C/EBPα interaction with 20S led to the degradation of C/EBPα. NQO1 in presence of its cofactor NADH protected C/EBPα against 20S degradation. Deletion and site-directed mutagenesis demonstrated that NQO1 and 20S competed for the same binding region (268)SGAGAGKAKKSV(279) in C/EBPα. Mutagenesis studies also revealed that NQO1Y127/Y129 required for NADH binding is essential for NQO1 stabilization of C/EBPα. Exposure of mice and HL-60 cells to 3 Grays of γ-radiation led to increased NQO1 that stabilized C/EBPα against 20S proteasomal degradation. This mechanism of NQO1 regulation of C/EBPα may provide protection to bone marrow against adverse effects of radiation exposure. The studies have significance for human individuals carrying hetero- or homozygous NQO1P187S mutation and are deficient or lack NQO1 protein.

Highlights

  • NAD(P)H:quinone oxidoreductase 1 (NQO1) protects against myeloproliferative diseases including leukemia (19 –26)

  • We demonstrate here that NQO1 controls myeloid differentiation factor C/EBP␣ and PU.1 to provide this protection

  • Disruption of C/EBP␣ and PU.1 both are known to be associated with development of myeloid leukemia [11,12, 34]

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Summary

Background

Results: Radiation-induced NQO1 competes with 20S proteasome for binding with myeloid differentiation factor C/EBP␣ leading to stabilization of C/EBP␣ and protection against myeloproliferative diseases. Disruption of NQO1 gene in mice leads to NQO1 is known to bind to and stabilize tumor suppressor p53, increased susceptibility to myeloproliferative disease In this p73␣, and p33 against 20S proteasomal degradation [5,6]. Exposure of mice and HL-60 cells to 3 Grays of ␥-radiation led to increased NQO1 that stabilized C/EBP␣ against 20S proteasomal degradation This mechanism of NQO1 regulation of C/EBP␣ may provide protecbeen found to be associated with myeloid transformation [12,13]. We demonstrate that NQO1 protects myeloid differentiation factor C/EBP␣ against 20S proteasomal degradation This leads to stabilization of C/EBP␣ and protection against myeloproliferative diseases including leukemia. Further studies identified the C/EBP␣and NQO1-interacting domains and determined the mechanism of protection

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