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RP105/MD-1对TLR-4/MD-2信号通路的抑制作用

Inhibition of TLR-4/MD-2 signaling by RP105/MD-1.

作者信息

Divanovic Senad, Trompette Aurelien, Atabani Sowsan F, Madan Rajat, Golenbock Douglas T, Visintin Alberto, Finberg Robert W, Tarakhovsky Alexander, Vogel Stefanie N, Belkaid Yasmine, Kurt-Jones Evelyn A, Karp Christopher L

机构信息

Division of Molecular Immunology, Cincinnati Children's Hospital Medical Center and University of Cincinnati College of Medicine, Cincinnati, Ohio, USA.

出版信息

J Endotoxin Res. 2005;11(6):363-8. doi: 10.1179/096805105X67300.

Abstract

Activation of Toll-like receptor (TLR) signaling by microbial and host molecular signatures is critical to the induction of immune responses. Such signaling is, perforce, kept under tight control. We recently discovered a novel endogenous inhibitor of TLR-4 - RP105. Initially identified as a B-cell-specific molecule with a role in B-cell proliferation in response to RP105 mAb and LPS, RP105 is a TLR-4 homologue. Further, like TLR-4 whose surface expression and signaling depends upon co-expression of the secreted protein MD-2, surface expression of RP105 is dependent upon co-expression of the MD2 homologue, MD-1. Unlike the TLRs, however, RP105 lacks a signaling domain, having the apparent structure of a TLR inhibitor. Further, RP105 is not B-cell-specific; its expression directly mirrors that of TLR-4 on dendritic cells and macrophages. These considerations suggested a role for RP105 as a physiological inhibitor of TLR-4 signaling. Indeed, we have recently found that: (i) RP105 is a specific inhibitor of TLR-4 signaling in HEK293 cells; (ii) RP105/MD-1 interacts directly with TLR-4/MD-2, inhibiting the ability of this signaling complex to bind LPS; (iii) RP105 regulates TLR-4 signaling in dendritic cells and macrophages; and (iv) RP105 regulates in vivo responses to LPS.

摘要

微生物和宿主分子信号激活Toll样受体(TLR)信号通路对于诱导免疫反应至关重要。这种信号通路必然受到严格控制。我们最近发现了一种新型的TLR-4内源性抑制剂——RP105。RP105最初被鉴定为一种B细胞特异性分子,在B细胞对RP105单克隆抗体和脂多糖的增殖反应中发挥作用,它是TLR-4的同源物。此外,与TLR-4的表面表达和信号传导依赖于分泌蛋白MD-2的共表达一样,RP105的表面表达也依赖于MD2同源物MD-1的共表达。然而,与TLR不同的是,RP105缺乏信号结构域,具有TLR抑制剂的明显结构。此外,RP105并非B细胞特异性的;它在树突状细胞和巨噬细胞上的表达直接反映了TLR-4的表达。这些因素提示RP105作为TLR-4信号通路的生理抑制剂发挥作用。事实上,我们最近发现:(i)RP105是HEK293细胞中TLR-4信号通路的特异性抑制剂;(ii)RP105/MD-1直接与TLR-4/MD-2相互作用,抑制该信号复合物结合脂多糖的能力;(iii)RP105调节树突状细胞和巨噬细胞中的TLR-4信号通路;(iv)RP105调节体内对脂多糖的反应。

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