| Literature DB >> 29058761 |
Haibin Tong1,2, Dake Qi3, Xingang Guan2, Guiquan Jiang2, Zhiyong Liao1, Xu Zhang1, Peichao Chen1, Nan Li1, Mingjiang Wu1.
Abstract
The excessive recruitment and improper activation of polymorphonuclear neutrophils (PMNs) often induces serious injury of host tissues, leading to inflammatory disorders. Therefore, to understand the molecular mechanism on neutrophil recruitment possesses essential pathological and physiological importance. In this study, we found that physiological shear stress induces c-Abl kinase activation in neutrophils, and c-Abl kinase inhibitor impaired neutrophil crawling behavior on ICAM-1. We further identified Vav1 was a downstream effector phosphorylated at Y174 and Y267. Once activated, c-Abl kinase regulated the activity of Vav1, which further affected Rac1/PAK1/LIMK1/cofilin signaling pathway. Here, we demonstrate a novel signaling function and critical role of c-Abl kinase during neutrophil crawling under physiological shear by regulating Vav1. These findings provide a promising treatment strategy for inflammation-related disease by inactivation of c-Abl kinase to restrict neutrophil recruitment.Entities:
Keywords: c-Abl kinase; cytoskeletal rearrangement; neutrophil crawling; shear stress
Mesh:
Substances:
Year: 2017 PMID: 29058761 DOI: 10.1002/jcb.26453
Source DB: PubMed Journal: J Cell Biochem ISSN: 0730-2312 Impact factor: 4.429