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MIR144* inhibits antimicrobial responses against Mycobacterium tuberculosis in human monocytes and macrophages by targeting the autophagy protein DRAM2

Authors
Kim, Jin KyungLee, Hye-MiPark, Ki-SunShin, Dong-MinKim, Tae SungKim, Yi SakSuh, Hyun-WooKim, Soo YeonKim, In SooKim, Jin-ManSon, Ji-WoongSohn, Kyung MokJung, Sung SooChung, ChaeukHan, Sang-BaeYang, Chul-SuJo, Eun-Kyeong
Issue Date
Jan-2017
Publisher
Landes Bioscience
Keywords
AMPK; DRAM2; MIR144*; Mycobacterium tuberculosis; tuberculosis
Citation
Autophagy, v.13, no.2, pp 423 - 441
Pages
19
Indexed
SCIE
SCOPUS
Journal Title
Autophagy
Volume
13
Number
2
Start Page
423
End Page
441
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/12055
DOI
10.1080/15548627.2016.1241922
ISSN
1554-8627
1554-8635
Abstract
Autophagy is an important antimicrobial effector process that defends against Mycobacterium tuberculosis (Mtb), the human pathogen causing tuberculosis (TB). MicroRNAs (miRNAs), endogenous noncoding RNAs, are involved in various biological functions and act as post-transcriptional regulators to target mRNAs. The process by which miRNAs affect antibacterial autophagy and host defense mechanisms against Mtb infections in human monocytes and macrophages is largely uncharacterized. In this study, we show that Mtb significantly induces the expression of MIR144*/hsa-miR-144-5p, which targets the 3-untranslated region of DRAM2 (DNA damage regulated autophagy modulator 2) in human monocytes and macrophages. Mtb infection downregulated, whereas the autophagy activators upregulated, DRAM2 expression in human monocytes and macrophages by activating AMP-activated protein kinase. In addition, overexpression of MIR144* decreased DRAM2 expression and formation of autophagosomes in human monocytes, whereas inhibition of MIR144* had the opposite effect. Moreover, the levels of MIR144* were elevated, whereas DRAM2 levels were reduced, in human peripheral blood cells and tissues in TB patients, indicating the clinical significance of MIR144* and DRAM2 in human TB. Notably, DRAM2 interacted with BECN1 and UVRAG, essential components of the autophagic machinery, leading to displacement of RUBCN from the BECN1 complex and enhancement of Ptdlns3K activity. Furthermore, MIR144* and DRAM2 were critically involved in phagosomal maturation and enhanced antimicrobial effects against Mtb. Our findings identify a previously unrecognized role of human MIR144* in the inhibition of antibacterial autophagy and the innate host immune response to Mtb. Additionally, these data reveal that DRAM2 is a key coordinator of autophagy activation that enhances antimicrobial activity against Mtb.
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Yang, Chul Su
ERICA 과학기술융합대학 (ERICA 의약생명과학과)
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