Identification of resting and type I IFN-activated human NK cell miRNomes reveals MicroRNA-378 and MicroRNA-30e as negative regulators of NK cell cytotoxicity

Pin Wang;Yan Gu;Qian Zhang;Yanmei Han;Jin Hou;Li Lin;Cong Wu;Yan Bao;Xiaoping Su;Minghong Jiang;Qingqing Wang;楠 李;雪涛 曹

Second Military Medical University;Zhejiang University;Chinese Academy of Medical Sciences

发表时间:2012-7-1

期 刊:Journal of Immunology

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=84862865602&partnerID=8YFLogxK

摘要

NK cells are important innate immune cells with potent cytotoxicity that can be activated by type I IFN from the host once infected. How NK cell cytotoxicity is activated by type I IFN and then tightly regulated remain to be fully elucidated. MicroRNAs (miRNAs, or miRs) are important regulators of innate immune response, but the full scale of miRNome in human NK cells remains to be determined. In this study, we reported an in-depth analysis of miRNomes in resting and IFN-α-activated human NK cells, found two abundant miRNAs, miR-378 and miR-30e, markedly decreased in activated NK cells by IFN-α, and further proved that miR-378 and miR-30e directly targeted granzyme B and perforin, respectively. Thus, IFN-α activation suppresses miR-378 and miR-30e expression to release cytolytic molecule mRNAs for their protein translation and then augments NK cell cytotoxicity. Importantly, the phenomena are also confirmed in human NK cells activated by other cytokines and even in the sorted CD16 +CD56 dimCD69 + human NK cell subset. Finally, miR-378 and miR-30e were proved to be suppressors of human NK cell cytotoxicity. Taken together, our results reveal that downregulated miR-378 and miR-30e during NK cell activation are negative regulators of human NK cell cytotoxicity, providing a mechanistic explanation for regulation of NK cell function by miRNAs.

相关科学

免疫和微生物学
免疫学
医学
免疫与过敏

文献指纹

医学与生命科学

Natural Killer Cells

MicroRNAs

perforin-granzyme B

Protein Biosynthesis

Innate Immunity

Down-Regulation

Cytokines

Messenger RNA

被引量

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999 4.568 1.6
2000 4.272 1.508
2001 4.302 1.521
2002 4.601 1.505
2003 4.409 1.476
2004 4.227 1.45
2005 4.328 1.458
2006 4.382 1.381
2007 4.655 1.379
2008 4.609 1.315
2009 4.157 1.339
2010 4.165 1.306
2011 10.4 4.06 1.347
2012 10.9 4.011 1.358
2013 10.5 3.909 1.346
2014 9.6 3.744 1.264
2015 9.2 3.571 1.258
2016 9.5 3.474 1.182
2017 9.2 2.837 1.118
2018 8.7 2.521 1.069
2019 8.3 2.509 1.142
2020 8.8
2021

相似文献推荐