TY - JOUR
T1 - The attenuated inflammation of MPL is due to the lack of CD14-dependent tight dimerization of the TLR4/MD2 complex at the plasma membrane
AU - Tanimura, Natsuko
AU - Saitoh, Shin Ichiroh
AU - Ohto, Umeharu
AU - Akashi-Takamura, Sachiko
AU - Fujimoto, Yukari
AU - Fukase, Koichi
AU - Shimizu, Toshiyuki
AU - Miyake, Kensuke
N1 - Funding Information:
A contract research fund from the Ministry of Education, Culture, Sports, Science and Technology for Program of Japan Initiative for Global Research Network on Infectious Diseases (10005010); Grant-in-Aid for Exploratory Research (20659074); Grant-in-Aid for Scientific Research on Innovative Areas (21117002); Japan Science and Technology Agency for Japanese-Korean Cooperative Program on Basic Medical Research to K.M.; Grant-in-Aid for young investigators (B) (24790463); JSPS research fellowship (PD1810234, RPD2540043) to N.T.
PY - 2014/6
Y1 - 2014/6
N2 - TLR4/MD-2 senses lipid A, activating the MyD88-signaling pathway on the plasma membrane and the TRIF-signaling pathway after CD14-mediated TLR4/MD-2 internalization into endosomes. Monophosphoryl lipid A (MPL), a detoxified derivative of lipid A, is weaker than lipid A in activating the MyD88-dependent pathway. Little is known, however, about mechanisms underlying the attenuated activation of MyD88-dependent pathways. We here show that MPL was impaired in induction of CD14-dependent TLR4/MD-2 dimerization compared with lipid A. Impaired TLR4/MD-2 dimerization decreased CD14-mediated TNFα production. In contrast, MPL was comparable to lipid A in CD14-independent MyD88-dependent TNFa production and TRIF-dependent responses including cell surface CD86 up-regulation and IFNβ induction. Although CD86 up-regulation is dependent on TRIF signaling, it was induced by TLR4/MD-2 at the plasma membrane. These results revealed that the attenuated MPL responses were due to CD14-initiated responses at the plasma membrane, but not just to responses initiated by MyD88, that is, MPL was specifically unable to induce CD14-dependent TLR4/MD-2 dimerization that selectively enhances MyD88-mediated responses at the plasma membrane.
AB - TLR4/MD-2 senses lipid A, activating the MyD88-signaling pathway on the plasma membrane and the TRIF-signaling pathway after CD14-mediated TLR4/MD-2 internalization into endosomes. Monophosphoryl lipid A (MPL), a detoxified derivative of lipid A, is weaker than lipid A in activating the MyD88-dependent pathway. Little is known, however, about mechanisms underlying the attenuated activation of MyD88-dependent pathways. We here show that MPL was impaired in induction of CD14-dependent TLR4/MD-2 dimerization compared with lipid A. Impaired TLR4/MD-2 dimerization decreased CD14-mediated TNFα production. In contrast, MPL was comparable to lipid A in CD14-independent MyD88-dependent TNFa production and TRIF-dependent responses including cell surface CD86 up-regulation and IFNβ induction. Although CD86 up-regulation is dependent on TRIF signaling, it was induced by TLR4/MD-2 at the plasma membrane. These results revealed that the attenuated MPL responses were due to CD14-initiated responses at the plasma membrane, but not just to responses initiated by MyD88, that is, MPL was specifically unable to induce CD14-dependent TLR4/MD-2 dimerization that selectively enhances MyD88-mediated responses at the plasma membrane.
KW - CD14
KW - LBP
KW - MPL
KW - TLR4/MD-2
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U2 - 10.1093/intimm/dxt071
DO - 10.1093/intimm/dxt071
M3 - Article
C2 - 24380872
AN - SCOPUS:84901488030
SN - 0953-8178
VL - 26
SP - 307
EP - 314
JO - International immunology
JF - International immunology
IS - 6
M1 - dxt071
ER -