Abstract

Sterile alpha motif and HD domain-containing protein 1 (SAMHD1) is a deoxynucleoside triphosphohydrolase (dNTPase) with a nuclear localization signal (NLS). SAMHD1 suppresses innate immune responses to viral infection and inflammatory stimuli by inhibiting the NF-κB and type I interferon (IFN-I) pathways. However, whether the dNTPase activity and nuclear localization of SAMHD1 are required for its suppression of innate immunity remains unknown. Here, we report that the dNTPase activity, but not nuclear localization of SAMHD1, is important for its suppression of innate immune responses in differentiated monocytic cells. We generated monocytic U937 cell lines stably expressing WT SAMHD1 or mutated variants defective in dNTPase activity (HD/RN) or nuclear localization (mNLS). WT SAMHD1 in differentiated U937 cells significantly inhibited lipopolysaccharide-induced expression of tumor necrosis factor α (TNF-α) and interleukin-6 (IL-6) mRNAs, as well as IFN-α, IFN-β, and TNF-α mRNA levels induced by Sendai virus infection. In contrast, the HD/RN mutant did not exhibit this inhibition in either U937 or THP-1 cells, indicating that the dNTPase activity of SAMHD1 is important for suppressing NF-κB activation. Of note, in lipopolysaccharide-treated or Sendai virus-infected U937 or THP-1 cells, the mNLS variant reduced TNF-α or IFN-β mRNA expression to a similar extent as did WT SAMHD1, suggesting that SAMHD1-mediated inhibition of innate immune responses is independent of SAMHD1's nuclear localization. Moreover, WT and mutant SAMHD1 similarly interacted with key proteins in NF-κB and IFN-I pathways in cells. This study further defines the role and mechanisms of SAMHD1 in suppressing innate immunity.

Highlights

  • Sterile alpha motif and HD domain-containing protein 1 (SAMHD1) is a deoxynucleoside triphosphohydrolase with a nuclear localization signal (NLS)

  • We found that WT SAMHD1, but not HD/RN, significantly reduced intracellular deoxynucleoside triphosphate (dNTP) levels compared with vector control cells (Fig. 1A), confirming that HD/RN has no deoxynucleoside triphosphohydrolase (dNTPase) activity

  • We found that reconstitution of WT SAMHD1 or mNLS in THP-1/KO cells decreased TNF-␣ mRNA levels relative to vector control cells (Fig. 5B, top bar chart), indicating that nuclear localization of SAMHD1 is not required for its suppression of NF-␬B activation in differentiated THP-1 cells

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Summary

Present address

These results suggest that SAMHD1 inhibition of NF-␬B activation and IFN-I induction is independent of its dNTPase activity in dividing cells It remains unknown whether the dNTPase activity and nuclear localization of SAMHD1 are important for its suppression of innate immune responses in nondividing cells. We found that WT SAMHD1, but not mutant HD/RN, suppressed NF-␬B activation and IFN-I induction in differentiated monocytic U937 and THP-1 cells in response to lipopolysaccharide (LPS) treatment or SeV infection These new data suggest that dNTPase activity, but not nuclear localization of SAMHD1, is important for its suppression of innate immunity in response to inflammatory stimulation and viral infection in nondividing monocytic cells.

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