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STAT4 is expressed in neutrophils and promotes antimicrobial immunity
Pegah Mehrpouya-Bahrami, Alina K. Moriarty, Paulo De Melo, W. Coles Keeter, Nada S. Alakhras, Andrew S. Nelson, Madeline Hoover, Maria S. Barrios, Jerry L. Nadler, C. Henrique Serezani, Mark H. Kaplan, Elena V. Galkina
Pegah Mehrpouya-Bahrami, Alina K. Moriarty, Paulo De Melo, W. Coles Keeter, Nada S. Alakhras, Andrew S. Nelson, Madeline Hoover, Maria S. Barrios, Jerry L. Nadler, C. Henrique Serezani, Mark H. Kaplan, Elena V. Galkina
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Research Article Immunology

STAT4 is expressed in neutrophils and promotes antimicrobial immunity

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Abstract

Signal transducer and activator of transcription 4 (STAT4) is expressed in hematopoietic cells and plays a key role in the differentiation of T helper 1 cells. Although STAT4 is required for immunity to intracellular pathogens, the T cell–independent protective mechanisms of STAT4 are not clearly defined. In this report, we demonstrate that STAT4-deficient mice were acutely sensitive to methicillin-resistant Staphylococcus aureus (MRSA) infection. We show that STAT4 was expressed in neutrophils and activated by IL-12 via a JAK2-dependent pathway. We demonstrate that STAT4 was required for multiple neutrophil functions, including IL-12–induced ROS production, chemotaxis, and production of the neutrophil extracellular traps. Importantly, myeloid-specific and neutrophil-specific deletion of STAT4 resulted in enhanced susceptibility to MRSA, demonstrating the key role of STAT4 in the in vivo function of these cells. Thus, these studies identify STAT4 as an essential regulator of neutrophil functions and a component of innate immune responses in vivo.

Authors

Pegah Mehrpouya-Bahrami, Alina K. Moriarty, Paulo De Melo, W. Coles Keeter, Nada S. Alakhras, Andrew S. Nelson, Madeline Hoover, Maria S. Barrios, Jerry L. Nadler, C. Henrique Serezani, Mark H. Kaplan, Elena V. Galkina

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Figure 2

STAT4 supports chemotaxis and migration of neutrophils.

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STAT4 supports chemotaxis and migration of neutrophils.
(A) CXCL1-induce...
(A) CXCL1-induced chemotaxis of WT, Stat4–/–, and Stat4fl/fl LysMcre neutrophils in a Transwell assay (n = 3/group in 2 independent experiments). (B and C) WT, Stat4–/–, and Stat4fl/fl LysMcre mice were injected i.p. with CXCL1 or 0.9% NaCl. After 4 hours, percentage of extravasated neutrophils in the lavage were determined (n = 5–6/group in 4 independent experiments). ***P < 0.001 by 1-way ANOVA followed by post hoc test. (D) GM-CSF–induced chemotaxis of WT and Stat4–/– neutrophils in a Transwell assay (n = 3/group in 3 independent experiments). *P < 0.05 using paired 2-tailed Student’s t test. (E and F) WT, Stat4–/–, and Stat4fl/fl LysMcre mice were injected i.p. with recombinant murine GM-CSF (rmGM-CSF), and 4 hours later percentage of extravasated neutrophils in the lavage was determined (n = 5–17/group in 7 independent experiments). ***P < 0.001 using Welch’s 1-way ANOVA test with Dunnett’s post hoc test.

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