Literature DB >> 31216372

Signaling and functional competency of neutrophils derived from bone-marrow cells expressing the ER-HOXB8 oncoprotein.

Stephanie Saul1, Cyril Castelbou1, Céline Fickentscher1, Nicolas Demaurex1.   

Abstract

Neutrophils play a central role in immunity and inflammation via their intrinsic ability to migrate into inflamed tissue, to phagocytose pathogens, and to kill bacterial and fungi by releasing large quantities of superoxide anions and lytic enzymes. The molecular pathways controlling neutrophil microbicidal functions are still unclear, because neutrophils have a short half-life and are resistant to genetic manipulation. Neutrophil-like cells (NLC) can be generated from myeloid progenitors conditionally immortalized with the ER-HoxB8 oncoprotein, but whether these cells can replace neutrophils in high-throughput functional assays is unclear. Here, we assess the ability of NLC derived from ER-HoxB8 progenitors to produce ROS and to perform chemotaxis and phagocytosis. We compare the Ca2+ responses and effector functions of NLC to primary murine neutrophils and document the molecular basis of their functional differences by mRNA profiling. Pro-inflammatory cytokines enhanced the expression by NLC of neutrophil surface markers and transcription factors. Ca2+ elevations evoked in NLC by agonists, adhesion receptors, and store depletion resembled the physiological responses recorded in primary neutrophils, but NLC expressed reduced amounts of Ca2+ signaling proteins and of chemotactic receptors. Unlike their myeloid progenitors, NLC produced H2 O2 when adhered to fibronectin, migrated toward chemotactic peptides, phagocytosed opsonized particles, and generated intracellular ROS. NLC phagocytosed as efficiently as primary neutrophils but produced 50 times less ROS and migrated less efficiently toward chemoattractant. Our data indicate that NLC can replace neutrophils to study Ca2+ signaling and phagocytosis, but that their incomplete granulocytic differentiation limits their use for chemotaxis and ROS production assays.
© 2019 The Authors. Journal of Leukocyte Biology published by Wiley Periodicals, Inc. on behalf of Society for Leukocyte Biology.

Entities:  

Keywords:  granulocytes; in vitro differentiation; myeloid cell lines; polymorphonuclear cells

Mesh:

Substances:

Year:  2019        PMID: 31216372     DOI: 10.1002/JLB.2A0818-314R

Source DB:  PubMed          Journal:  J Leukoc Biol        ISSN: 0741-5400            Impact factor:   4.962


  8 in total

1.  Targeting of Formyl Peptide Receptor 2 for in vivo imaging of acute vascular inflammation.

Authors:  Tamara Boltersdorf; Junaid Ansari; Elena Y Senchenkova; Jieny Groeper; Denise Pajonczyk; Shantel A Vital; Gaganpreet Kaur; J Steve Alexander; Thomas Vogl; Ursula Rescher; Nicholas J Long; Felicity N E Gavins
Journal:  Theranostics       Date:  2020-05-17       Impact factor: 11.556

2.  TREM-1 is required for enhanced OpZ-induced superoxide generation following priming.

Authors:  Shubha Murthy; Sankar Baruah; Jayden L Bowen; Kathy Keck; Brett A Wagner; Garry R Buettner; David B Sykes; Julia Klesney-Tait
Journal:  J Leukoc Biol       Date:  2022-01-24       Impact factor: 6.011

3.  Murine Myeloid Progenitors Attenuate Immune Dysfunction Induced by Hemorrhagic Shock.

Authors:  Joshua T Cohen; Michael Danise; Jason T Machan; Runping Zhao; Craig T Lefort
Journal:  Stem Cell Reports       Date:  2021-01-21       Impact factor: 7.765

4.  Engraftment, Fate, and Function of HoxB8-Conditional Neutrophil Progenitors in the Unconditioned Murine Host.

Authors:  Joshua T Cohen; Michael Danise; Kristina D Hinman; Brittany M Neumann; Renita Johnson; Zachary S Wilson; Anna Chorzalska; Patrycja M Dubielecka; Craig T Lefort
Journal:  Front Cell Dev Biol       Date:  2022-01-20

Review 5.  Roles of mitochondria in neutrophils.

Authors:  Ziming Cao; Meng Zhao; Hao Sun; Liang Hu; Yunfeng Chen; Zhichao Fan
Journal:  Front Immunol       Date:  2022-08-19       Impact factor: 8.786

6.  ROS-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies.

Authors:  Lihui Wang; Zhichao Ai; Tariq Khoyratty; Kristina Zec; Hayley L Eames; Erinke van Grinsven; Alison Hudak; Susan Morris; David Ahern; Claudia Monaco; Evgeniy B Eruslanov; Raashid Luqmani; Irina A Udalova
Journal:  JCI Insight       Date:  2020-10-15

7.  Neutrophils require SKAP2 for reactive oxygen species production following C-type lectin and Candida stimulation.

Authors:  Giang T Nguyen; Shuying Xu; Walter Adams; John M Leong; Stephen C Bunnell; Michael K Mansour; David B Sykes; Joan Mecsas
Journal:  iScience       Date:  2021-07-16

8.  Spleen Tyrosine Kinase Is a Critical Regulator of Neutrophil Responses to Candida Species.

Authors:  Paige E Negoro; Shuying Xu; Zeina Dagher; Alex Hopke; Jennifer L Reedy; Michael B Feldman; Nida S Khan; Adam L Viens; Natalie J Alexander; Natalie J Atallah; Allison K Scherer; Richard A Dutko; Jane Jeffery; John F Kernien; J Scott Fites; Jeniel E Nett; Bruce S Klein; Jatin M Vyas; Daniel Irimia; David B Sykes; Michael K Mansour
Journal:  mBio       Date:  2020-05-12       Impact factor: 7.786

  8 in total

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