Signal Diversity of Receptor for Advanced Glycation End Products

被引:3
作者
Sakaguchi, Masakiyo [1 ]
Kinoshita, Rie [1 ]
Putranto, Endy Widya [3 ]
Ruma, I. Made Winarsa [1 ,2 ,4 ]
Sumardika, I. Wayan [1 ,2 ]
Youyi, Chen [1 ]
Tomonobu, Naoko [1 ]
Yamamoto, Ken-ichi [1 ]
Murata, Hitoshi [1 ]
机构
[1] Okayama Univ, Grad Sch Med Dent & Pharmaceut Sci, Dept Cell Biol, Okayama 7008558, Japan
[2] Okayama Univ, Grad Sch Med Dent & Pharmaceut Sci, Dept Pharmacol, Okayama 7008558, Japan
[3] Univ Gadjah Mada, Fac Med, Yogyakarta 55281, Indonesia
[4] Udayana Univ, Fac Med, Denpasar 80232, Bali, Indonesia
关键词
receptor for advanced glycation end products; RAGE; adaptor protein; signal transduction; inflammatory pathogenesis; RAGE; ACTIVATION; PROTEIN; INFLAMMATION; AMPHOTERIN; MIGRATION; PATHWAY; CANCER; MECHANISMS; SYSTEM;
D O I
暂无
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
The receptor for advanced glycation end products (RAGE) is involved in inflammatory pathogenesis. It functions as a receptor to multiple ligands such as AGEs, HMGB1 and S100 proteins, activating multiple intracellular signaling pathways with each ligand binding. The molecular events by which ligand-activated RAGE controls diverse signaling are not well understood, but some progress was made recently. Accumulating evidence revealed that RAGE has multiple binding partners within the cytoplasm and on the plasma membrane. It was first pointed out in 2008 that RAGE's cytoplasmic tail is able to recruit Diaphanous-1 (Dia-1), resulting in the acquisition of increased cellular motility through Rac1/Cdc42 activation. We also observed that within the cytosol, RAGE's cytoplasmic tail behaves similarly to a Toll-like receptor (TLR4)-TIR domain, interacting with TIRAP and MyD88 adaptor molecules that in turn activate multiple downstream signals. Subsequent studies demonstrated the presence of an alternative adaptor molecule, DAP10, on the plasma membrane. The coupling of RAGE with DAP10 is critical for enhancing the RAGE-mediated survival signal. Interestingly, RAGE interaction on the membrane was not restricted to DAP10 alone. The chemotactic G-protein-coupled receptors (GPCRs) formyl peptide receptors1 and 2 (FPR1 and FPR2) also interacted with RAGE on the plasma membrane. Binding interaction between leukotriene B4 receptor 1 (BLT1) and RAGE was also demonstrated. All of the interactions affected the RAGE signal polarity. These findings indicate that functional interactions between RAGE and various molecules within the cytoplasmic area or on the membrane area coordinately regulate multiple ligand-mediated RAGE responses, leading to typical cellular phenotypes in several pathological settings. Here we review RAGE's signaling diversity, to contribute to the understanding of the elaborate functions of RAGE in physiological and pathological contexts.
引用
收藏
页码:459 / 465
页数:7
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