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Cited 20 time in webofscience Cited 19 time in scopus
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Lipocalin 2 (Lcn2) interferes with iron uptake by Brucella abortus and dampens immunoregulation during infection of RAW 264.7 macrophagesopen access

Authors
Huynh Tan HopArayan, Lauren TogononTran Xuan Ngoc HuyReyes, Alisha Wehdnesday BernardoBaek, Eun JinMin, WongiLee, Hu JangRhee, Man HeeWatanabe, KentaChang, Hong HeeKim, Suk
Issue Date
Mar-2018
Publisher
WILEY
Keywords
apoptosis; Brucella abortus; iron sequestrating; lipocalin 2; NO; ROS
Citation
CELLULAR MICROBIOLOGY, v.20, no.3
Indexed
SCI
SCIE
SCOPUS
Journal Title
CELLULAR MICROBIOLOGY
Volume
20
Number
3
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/11844
DOI
10.1111/cmi.12813
ISSN
1462-5814
1462-5822
Abstract
Lipocalin 2 (Lcn2) is an important innate immunity component against bacterial pathogens. In this study, we report that Lcn2 is induced by Brucella (B.) abortus infection and significantly contributes to the restriction of intracellular survival of Brucella in macrophages. We found that Lcn2 prevented iron uptake by B.abortus through two distinct mechanisms. First, Lcn2 is secreted to capture bacterial siderophore(s) and abrogate iron import by Brucella. Second, Lcn2 decreases the intracellular iron levels during Brucella infection, which probably deprives the invading Brucella of the iron source needed for growth. Suppression of Lcn2 signalling resulted in a marked induction of anti-inflammatory cytokine, interleukin 10, which was shown to play a major role in Lcn2-induced antibrucella immunity. Similarly, interleukin 6 was also found to be increased when Lcn2 signalling is abrogated; however, this induction was thought to be an alternative pathway that rescues the cell from infection when the effective Lnc2 pathway is repressed. Furthermore, Lcn2 deficiency also caused a marked decrease in brucellacidal effectors, such as reactive oxygen species and nitric oxide but not the phagolysosome fusion. Taken together, our results indicate that Lcn2 is required for the efficient restriction of intracellular B.abortus growth that is through limiting iron acquisition and shifting cells to pro-inflammatory brucellacidal activity in murine macrophages.
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