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Updated: Jun 2, 2026

Assessing Cellular Target Engagement by SHP2 (PTPN11) Phosphatase Inhibitors
Published on: July 17, 2020
Protein kinase CK2/PTEN pathway plays a key role in platelet-activating factor-mediated murine anaphylactic shock
Nam-In Kang1, Ha-Yong Yoon, Han-A Kim
1Department of Immunology, Chonbuk National University Medical School, Jeonju 561-180, Republic of Korea.
Abstract:
Platelet-activating factor (PAF) is a major mediator in the induction of fatal hypovolemic shock in murine anaphylaxis. This PAF-mediated effect has been reported to be associated with PI3K/Akt-dependent eNOS-derived NO. The phosphatase and tensin homolog deleted on chromosome 10 (PTEN) is phosphatidylinositol phosphate phosphatase, which negatively controls PI3K by dephosphorylating the signaling lipid, phosphatidylinositol 3,4,5-triphosphate. In this study, we examined the possible involvement of PTEN in PAF-mediated anaphylactic shock. Induction of anaphylaxis or PAF injection resulted in a rapid decrease in PTEN activity, followed by increases in PI3K activity and phosphorylation of Akt and eNOS. Systemic administration of adenoviruses carrying PTEN cDNA (adenoviral PTEN), but not the control AdLacZ, not only attenuated anaphylactic symptoms, but also reversed anaphylaxis- or PAF-induced changes in PTEN and PI3K activities, as well as phosphorylation of Akt and eNOS. We found that the decreased PTEN activity was associated with PTEN phosphorylation, the latter effect being prevented by the protein kinase CK2 inhibitor, DMAT. DMAT also inhibited anaphylactic symptoms as well as the anaphylaxis- or PAF-mediated PTEN/PI3K/Akt/eNOS signaling cascade. CK2 activity was increased by PAF. The present data provide, as the key mechanism underlying anaphylactic shock, PAF triggers the upstream pathway CK2/PTEN, which ultimately leads to the activation of PI3K/Akt/eNOS. Therefore, CK2/PTEN may be a potent target in the control of anaphylaxis and other many PAF-mediated pathologic conditions.
Insights
Platelet-activating factor (PAF) triggers anaphylactic shock by inhibiting PTEN activity, leading to PI3K/Akt/eNOS activation. Targeting CK2/PTEN pathways may control anaphylaxis and other PAF-mediated conditions.
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- Platelet-activating factor (PAF) is a key mediator of fatal hypovolemic shock in murine anaphylaxis.
- This effect is linked to PI3K/Akt-dependent nitric oxide (NO) production via eNOS.
- PTEN is a phosphatase that negatively regulates PI3K signaling.
Purpose of the Study:
- To investigate the role of PTEN in PAF-mediated anaphylactic shock.
- To elucidate the signaling pathway involving PTEN in anaphylaxis.
Main Methods:
- Induction of anaphylaxis and PAF injection in mice.
- Measurement of PTEN and PI3K activities, and Akt/eNOS phosphorylation.
- Administration of adenoviral PTEN and CK2 inhibitor (DMAT).
Main Results:
- Anaphylaxis/PAF injection decreased PTEN activity and increased PI3K, Akt, and eNOS phosphorylation.
- Adenoviral PTEN attenuated anaphylactic symptoms and reversed signaling changes.
- PTEN phosphorylation, inhibited by DMAT, was linked to CK2 activity, which was increased by PAF.
- DMAT inhibited anaphylaxis and the PTEN/PI3K/Akt/eNOS cascade.
Conclusions:
- PAF activates the CK2/PTEN pathway, leading to PI3K/Akt/eNOS activation and anaphylactic shock.
- The CK2/PTEN axis represents a potential therapeutic target for anaphylaxis and other PAF-related pathologies.
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