Academic Thesis

Basic information

Name Higashi Tunehito
Belonging department
Occupation name
researchmap researcher code 5000085325
researchmap agency Okayama University of Science

Title

ARF1 recruits RAC1 to leading edge in neutrophil chemotaxis

Bibliography Type

 

Author

Yuichi Mazaki
Yasuhito Onodera
Tsunehito Higashi
Takahiro Horinouchi
Tsukasa Oikawa
Hisataka Sabe

Summary

Background: The small GTPase ARF1 mediates membrane trafficking mostly from the Golgi, and is essential for the G protein-coupled receptor (GPCR)-mediated chemotaxis of neutrophils. In this process, ARF1 is activated by the guanine nucleotide exchanger GBF1, and is inactivated by the GTPase-activating protein GIT2. Neutrophils generate the G beta gamma.-PAK1-aPIX-GIT2 linear complex during GPCR-induced chemotaxis, in which aPIX activates RAC1/CDC42, which then employs PAK1. However, it has remained unclear as to why GIT2 is included in this complex.
Results: We investigated the association between ARF1 and RAC1/CDC42 during the fMLP-stimulated chemotaxis of HL60 cells. We found that the silencing of GBF1 significantly impaired the recruitment of RAC1 to the leading edges, but not PAK1, aPIX, RAC2, or CDC42. A significant population of RAC1 colocalized with ARF1 at the leading edges in stimulated cells, whereas fMLP activated both ARF1 and ARF5. Consistently, the silencing of ARF1, but not ARF5, impaired the recruitment of RAC1, whereas the silencing of RAC1 did not affect the recruitment of ARF1 to the leading edges.
Conclusions: Our results indicated that the activation of ARF1 triggers the plasma membrane recruitment of RAC1 in GPCR-mediated chemotaxis, which is essential for cortical actin remodeling. Thus, membrane remodeling at the leading edges appears to precede actin remodeling in chemotaxis. Together with the fact that GIT2, which inactivates ARF1, is an integral component of the machinery activating RAC1, we proposed a model in which the ARF1-RAC1 linkage enables the regulation of ARF1 by repetitive on/off cycles during GPCR-mediated neutrophil chemotaxis.

Magazine(name)

CELL COMMUNICATION AND SIGNALING

Publisher

BIOMED CENTRAL LTD

Volume

15

Number Of Pages

 

StartingPage

36

EndingPage

 

Date of Issue

2017-10

Referee

Exist

Invited

Not exist

Language

English

Thesis Type

Research papers (academic journals)

ISSN

 

DOI

10.1186/s12964-017-0193-y

NAID

 

PMID

 

J-GLOBAL ID

 

arXiv ID

 

ORCID Put Code

 

DBLP ID