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Author Spotlight: Developing Tools to Tune the Activity of Tyrosine Phosphatases
Published on: September 6, 2024
Protein-tyrosine phosphatase Shp2 positively regulates macrophage oxidative burst
Xing Jun Li1, Charles B Goodwin2, Sarah C Nabinger3
1From the Department of Pediatrics, the Herman B Wells Center for Pediatric Research, and xl9@iu.edu.
Abstract:
Macrophages are vital to innate immunity and express pattern recognition receptors and integrins for the rapid detection of invading pathogens. Stimulation of Dectin-1 and complement receptor 3 (CR3) activates Erk- and Akt-dependent production of reactive oxygen species (ROS). Shp2, a protein-tyrosine phosphatase encoded by Ptpn11, promotes activation of Ras-Erk and PI3K-Akt and is crucial for hematopoietic cell function; however, no studies have examined Shp2 function in particulate-stimulated ROS production. Maximal Dectin-1-stimulated ROS production corresponded kinetically to maximal Shp2 and Erk phosphorylation. Bone marrow-derived macrophages (BMMs) from mice with a conditionally deleted allele of Ptpn11 (Shp2(flox/flox);Mx1Cre+) produced significantly lower ROS levels compared with control BMMs. Although YFP-tagged phosphatase dead Shp2-C463A was strongly recruited to the early phagosome, its expression inhibited Dectin-1- and CR3-stimulated phospho-Erk and ROS levels, placing Shp2 phosphatase function and Erk activation upstream of ROS production. Further, BMMs expressing gain of function Shp2-D61Y or Shp2-E76K and peritoneal exudate macrophages from Shp2D61Y/+;Mx1Cre+ mice produced significantly elevated levels of Dectin-1- and CR3-stimulated ROS, which was reduced by pharmacologic inhibition of Erk. SIRPα (signal regulatory protein α) is a myeloid inhibitory immunoreceptor that requires tyrosine phosphorylation to exert its inhibitory effect. YFP-Shp2C463A-expressing cells have elevated phospho-SIRPα levels and an increased Shp2-SIRPα interaction compared with YFP-WT Shp2-expressing cells. Collectively, these findings indicate that Shp2 phosphatase function positively regulates Dectin-1- and CR3-stimulated ROS production in macrophages by dephosphorylating and thus mitigating the inhibitory function of SIRPα and by promoting Erk activation.
Insights
Shp2 phosphatase activity is crucial for macrophage immune response, regulating reactive oxygen species (ROS) production by activating Erk and dampening inhibitory signals from SIRPα.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Macrophages are key innate immune cells utilizing pattern recognition receptors and integrins to detect pathogens.
- Dectin-1 and complement receptor 3 (CR3) stimulation trigger reactive oxygen species (ROS) production via Erk and Akt pathways.
- The protein-tyrosine phosphatase Shp2 (encoded by Ptpn11) is vital for hematopoietic cells, but its role in particulate-stimulated ROS production is unknown.
Purpose of the Study:
- To investigate the role of Shp2 phosphatase function in Dectin-1 and CR3-stimulated ROS production in macrophages.
- To determine the molecular mechanisms by which Shp2 influences ROS generation and Erk activation.
Main Methods:
- Utilized bone marrow-derived macrophages (BMMs) from mice with conditional Ptpn11 deletion.
- Employed YFP-tagged wild-type, phosphatase-dead (Shp2-C463A), and gain-of-function (Shp2-D61Y, Shp2-E76K) Shp2 variants.
- Assessed ROS production, Erk phosphorylation, and signal regulatory protein alpha (SIRPα) phosphorylation levels.
- Used pharmacologic inhibition of Erk and analyzed Shp2-SIRPα interactions.
Main Results:
- Maximal Dectin-1-stimulated ROS production correlated with Shp2 and Erk phosphorylation.
- Mice lacking Ptpn11 exhibited significantly reduced ROS production.
- Phosphatase-dead Shp2 inhibited Dectin-1/CR3-stimulated Erk phosphorylation and ROS, indicating Shp2 acts upstream.
- Gain-of-function Shp2 variants and Shp2D61Y/+ mice showed elevated ROS, reducible by Erk inhibition.
- Shp2 phosphatase activity mitigated inhibitory SIRPα phosphorylation and enhanced Shp2-SIRPα interaction.
Conclusions:
- Shp2 phosphatase function is a positive regulator of Dectin-1 and CR3-stimulated ROS production in macrophages.
- Shp2 promotes ROS by dephosphorylating SIRPα, thereby reducing its inhibitory effect.
- Shp2 also contributes to ROS production through Erk activation.
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