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Priming Effect of Lipopolysaccharide on Acetyl-Coenzyme A:Lyso-Platelet-Activating Factor Acetyltransferase Is MyD88 and TRIF Independent

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TLDR
Investigation of the priming effect of LPS on the acetyltransferase activation by PAF in TLR4-knockout (KO) mice, MyD88-KO mice, and Toll/IL-1R domain-containing adaptor inducing IFN-β (TRIF)-KO mice demonstrated that LPS exerted aPriming effect on PAF receptor-mediated acetyl transferase activation through the TLR 4-dependent, but MyD 88- and TRIF
Abstract
LPS has a priming effect on various stimuli. For instance, LPS priming enhances the production of platelet-activating factor (PAF), a proinflammatory lipid mediator that is induced by PAF itself. Among various enzymes responsible for PAF biosynthesis, acetyl-coenzyme A:1-O-alkyl-2-lyso-sn-glycero-3-phosphocholine acetyltransferase is one of the enzymes activated by PAF receptor stimulation. In this study we investigated the priming effect of LPS on the acetyltransferase activation by PAF in TLR4-knockout (KO) mice, MyD88-KO mice, and Toll/IL-1R domain-containing adaptor inducing IFN-β (TRIF)-KO mice. This enzyme was biphasically activated by LPS. Although the first peak occurred within 30 min in wild-type (WT), but not TLR4-KO or MyD88-KO, macrophages, the second phase reached a maximum within hours in WT, MyD88-KO, and TRIF-KO, but not in TLR4-KO, macrophages. Only in the second phase was the increase in acetyltransferase activity upon PAF receptor activation remarkably enhanced in WT, MyD88-KO, and TRIF-KO cells, but not in TLR4-KO cells. These data demonstrated that LPS exerted a priming effect on PAF receptor-mediated acetyltransferase activation through the TLR4-dependent, but MyD88- and TRIF-independent, pathway.

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Journal ArticleDOI

Lipid Mediators in Health and Disease: Enzymes and Receptors as Therapeutic Targets for the Regulation of Immunity and Inflammation

TL;DR: The current state of knowledge of the synthesis of lipid mediators and the function of their cognate receptors is summarized, and the effects of genetic or pharmacological ablation of enzyme or receptor function on various pathophysiological processes are discussed.
Journal ArticleDOI

Acyl-CoA:lysophospholipid acyltransferases.

TL;DR: Recent studies on cloning and characterization of lysophospholipid acyltransferases that contribute to membrane asymmetry and diversity are summarized.
Journal ArticleDOI

Recent progress on acyl CoA: lysophospholipid acyltransferase research.

TL;DR: In this paper, a review of the cloning and characterization of lysophospholipid acyltransferases (LPLATs), which contribute to membrane asymmetry and diversity, is presented.
Journal ArticleDOI

A single enzyme catalyzes both platelet-activating factor production and membrane biogenesis of inflammatory cells. Cloning and characterization of acetyl-CoA:LYSO-PAF acetyltransferase.

TL;DR: Cloned lyso-PAF acetyltransferase provides a novel concept that a single enzyme catalyzes membrane biogenesis of inflammatory cells while producing a prophlogistic mediator in response to external stimuli.
Journal ArticleDOI

Identification of a novel noninflammatory biosynthetic pathway of platelet-activating factor.

TL;DR: Results suggest the molecular diversity of lyso-PAF ATs is as follows: one (LysoPAFAT/LPCAT2) is inducible and activated by inflammatory stimulation, and the other ( LPCAT1) is constitutively expressed.
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Journal Article

Cutting edge: Toll-like receptor 4 (TLR4)-deficient mice are hyporesponsive to lipopolysaccharide: evidence for TLR4 as the Lps gene product.

TL;DR: It is demonstrated that TLR4 is the gene product that regulates LPS response, and a single point mutation of the amino acid that is highly conserved among the IL-1/Toll receptor family is found.
Journal ArticleDOI

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TL;DR: It is shown that TRIF is essential for TLR3- and TLR4-mediated signaling pathways facilitating mammalian antiviral host defense and complete loss of nuclear factor kappa B activation in response toTLR4 stimulation is demonstrated.
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