Structural and Functional Characterization of the Histidine Phosphatase Domains of Human Sts-1 and Sts-2

Weijie Zhou1, Yue Yin1, Alexandra S Weinheimer2

  • 1Department of Chemistry, Stony Brook University , Stony Brook, New York 11794, United States.

Biochemistry
|August 1, 2017
PubMed

Insights

Suppressor of T cell signaling (Sts) proteins Sts-1 and Sts-2 are key regulators of immune responses. Inhibiting these phosphatases may offer a new strategy against fungal infections like Candida albicans.

Area of Science:

  • Immunology
  • Biochemistry
  • Structural Biology

Background:

  • Suppressor of T cell signaling (Sts) proteins, Sts-1 and Sts-2, are homologous phosphatases.
  • These proteins negatively regulate T cell receptor signaling pathways.
  • Inactivating Sts-1 and Sts-2 confers resistance to Candida albicans infection in mice.

Purpose of the Study:

  • To characterize the structure and kinetics of human Sts-1 and Sts-2 histidine phosphatase domains (Sts-1HP and Sts-2HP).
  • To explore the potential of Sts proteins as therapeutic targets for fungal infections.

Main Methods:

  • X-ray crystallography was used to determine the structures of Sts-1HP and Sts-2HP.
  • Steady-state kinetic analyses were performed to assess phosphatase activity.
  • Inhibitor studies and cell-based assays were conducted to evaluate Sts-1 activity and inhibition.

Main Results:

  • X-ray crystal structures of Sts-1HP and Sts-2HP were determined.
  • Sts-1HP exhibited significantly higher phosphatase activity than Sts-2HP.
  • The SHP-1 inhibitor PHPS1 potently inhibited Sts-1 (Ki = 1.05 ± 0.15 μM).
  • Human Sts-1 demonstrated robust phosphatase activity against Zap-70 in cell-based assays.

Conclusions:

  • Human Sts-1 and Sts-2 are druggable targets.
  • Structural and kinetic data provide a foundation for developing Sts inhibitors.
  • Targeting Sts proteins may offer a novel therapeutic strategy against fungal infections.