TY - JOUR
T1 - MicroRNAs activate natural killer cells through Toll-like receptor signaling
AU - He, Shun
AU - Chu, Jianhong
AU - Wu, Lai Chu
AU - Mao, Hsiaoyin
AU - Peng, Yong
AU - Alvarez-Breckenridge, Christopher A.
AU - Hughes, Tiffany
AU - Wei, Min
AU - Zhang, Jianying
AU - Yuan, Shunzong
AU - Sandhu, Sumeet
AU - Vasu, Sumithira
AU - Benson, Don M.
AU - Hofmeister, Craig C.
AU - He, Xiaoming
AU - Ghoshal, Kalpana
AU - Devine, Steven M.
AU - Caligiuri, Michael A.
AU - Yu, Jianhua
N1 - Publisher Copyright:
© 2013 by The American Society of Hematology.
PY - 2013/6/6
Y1 - 2013/6/6
N2 - MicroRNAs (miRNAs) bind to complementary sequences of target mRNAs, resulting in translational repression or target degradation and thus gene silencing. miRNAs are abundant in circulating blood, yet it is not known whether, as a class of regulatory molecules, they interact with human natural killer (NK) cells. Here we found that the treatment of human NK cells with several mature miRNAs in the presence of a low concentration of interleukin-12 induced CD69 expression, interferon-γ production, and degranulation marker CD107a expression. In vivo, infusion of several miRNAs alone in murine peripheral blood also resulted in comparable NK-cell activation, but not T-cell activation. Furthermore, miRNA administration significantly protected mice from tumor development in an NK cell–dependent manner. Mechanistically, we found that miRNA stimulation led to downstream activation of nuclear factor kB (NF-kB), an effect that was blunted by a block in Toll-like receptor 1(TLR1) signaling and attenuated in lymphoma patients. Knockdown of TLR1 resulted in less activation by miRNAs. Collectively, we show that miRNAs have a capacity to selectively activate innate immune effector cells that is, at least in part, via the TLR1–NF-kB signaling pathway. This may be important in the normal host defense against infection and/or malignant transformation.
AB - MicroRNAs (miRNAs) bind to complementary sequences of target mRNAs, resulting in translational repression or target degradation and thus gene silencing. miRNAs are abundant in circulating blood, yet it is not known whether, as a class of regulatory molecules, they interact with human natural killer (NK) cells. Here we found that the treatment of human NK cells with several mature miRNAs in the presence of a low concentration of interleukin-12 induced CD69 expression, interferon-γ production, and degranulation marker CD107a expression. In vivo, infusion of several miRNAs alone in murine peripheral blood also resulted in comparable NK-cell activation, but not T-cell activation. Furthermore, miRNA administration significantly protected mice from tumor development in an NK cell–dependent manner. Mechanistically, we found that miRNA stimulation led to downstream activation of nuclear factor kB (NF-kB), an effect that was blunted by a block in Toll-like receptor 1(TLR1) signaling and attenuated in lymphoma patients. Knockdown of TLR1 resulted in less activation by miRNAs. Collectively, we show that miRNAs have a capacity to selectively activate innate immune effector cells that is, at least in part, via the TLR1–NF-kB signaling pathway. This may be important in the normal host defense against infection and/or malignant transformation.
UR - https://www.scopus.com/pages/publications/84881033998
U2 - 10.1182/blood-2012-07-441360
DO - 10.1182/blood-2012-07-441360
M3 - Article
C2 - 23580661
AN - SCOPUS:84881033998
SN - 0006-4971
VL - 121
SP - 4663
EP - 4671
JO - Blood
JF - Blood
IS - 23
ER -