Loss of S100A9 (MRP14) Results in Reduced Interleukin-8-Induced CD11b Surface Expression, a Polarized Microfilament System, and Diminished Responsiveness to Chemoattractants In Vitro

S100A9型 生物 趋化性 体内 细胞生物学 趋化作用 体外 免疫学 炎症 受体 生物化学 生物技术
作者
Marie-Pierre Manitz,Basil A. Horst,Stephan Seeliger,Anke Strey,Boris V. Skryabin,Matthias Gunzer,Werner Frings,Frank Schünlau,Johannes Roth,Clemens Sorg,Wolfgang Nacken
出处
期刊:Molecular and Cellular Biology [American Society for Microbiology]
卷期号:23 (3): 1034-1043 被引量:310
标识
DOI:10.1128/mcb.23.3.1034-1043.2003
摘要

AbstractThe S100A9 (MRP14) protein is abundantly expressed in myeloid cells and has been associated with various inflammatory diseases. The S100A9-deficient mice described here were viable, fertile, and generally of healthy appearance. The myelopoietic potential of the S100A9-null bone marrow was normal. S100A8, the heterodimerization partner of S100A9 was not detectable in peripheral blood cells, suggesting that even a deficiency in both S100A8 and S100A9 proteins was compatible with viable and mature neutrophils. Surprisingly, the invasion of S100A9-deficient leukocytes into the peritoneum and into the skin in vivo was indistinguishable from that in wild-type mice. However, stimulation of S100A9-deficient neutrophils with interleukin-8 in vitro failed to provoke an up-regulation of CD11b. Migration upon a chemotactic stimulus through an endothelial monolayer was markedly diminished in S100A9-deficient neutrophils. Attenuated chemokinesis of the S100A9-deficient neutrophils was observed by using a three-dimensional collagen matrix migration assay. The altered migratory behavior was associated with a microfilament system that was highly polarized in unstimulated S100A9-deficient neutrophils. Our data suggest that loss of the calcium-binding S100A9 protein reduces the responsiveness of the neutrophils upon chemoattractant stimuli at least in vitro. Alternative pathways for neutrophil emigration may be responsible for the lack of any effect in the two in vivo models we have investigated so far. ACKNOWLEDGMENTSThis project was generously supported by the SFB 293 project A10 (Deutsche Forschungsgemeinschaft).The excellent technical assistance of D. Wiesmann, B. Küter-Luks, K. Fischer, and H. Hater is acknowledged. Many thanks to A. Kondrashov for his help with blastocyst injections. We also thank Claus Kerkhoff for critical reading of the manuscript.
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