首页> 美国卫生研究院文献>ISRN Nephrology >Hyaluronan Is Not a Ligand but a Regulator of Toll-Like Receptor Signaling in Mesangial Cells: Role of Extracellular Matrix in Innate Immunity
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Hyaluronan Is Not a Ligand but a Regulator of Toll-Like Receptor Signaling in Mesangial Cells: Role of Extracellular Matrix in Innate Immunity

机译:透明质酸不是配体而是肾小球系膜细胞中类似Toll受体信号的调节剂:细胞外基质在先天免疫中的作用。

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摘要

Glomerular mesangial cells (MC), like most cell types secrete hyaluronan (HA), which attached to the cell surface via CD44, is the backbone of a hydrophilic gel matrix around these cells. Reduced extracellular matrix thickness and viscosity result from HA cleavage during inflammation. HA fragments were reported to trigger innate immunity via Toll-like receptor-(TLR-) 2 and/or TLR4 in immune cells. We questioned whether HA fragments also regulate the immunostimulatory capacity of smooth muscle cell-like MC. LPS (TLR4-ligand) and PAM3CysSK4 (TLR2-ligand) induced IL-6 secretion in MC; highly purified endotoxin-free HA < 3000 Da up to 50 μg/mL did not. Bovine-testis-hyaluronidase from was used to digest MC-HA into HA fragments of different size directly in the cell culture. Resultant HA fragments did not activate TLR4-deficient MC, while TLR2-deficient MC responded to LPS-contamination of hyaluronidase, not to produced HA fragments. Hyaluronidase increased the stimulatory effect of TLR2-/-3/-5 ligands on their TLR-receptors in TLR4-deficient MC, excluding any effect by LPS-contamination. Supplemented heparin suppressed every stimulatory effect in a dose-dependent manner. We conclude that the glycosaminoglycan HA creates a pericellular jelly barrier, which covers surface receptors like the TLRs. Barrier-thickness and viscosity balanced by HA-synthesis and degradation and the amount of HA-receptors on the cell surface regulate innate immunity via the accessibility of the receptors.
机译:像大多数细胞类型一样,肾小球系膜细胞(MC)分泌透明质酸(HA),它通过CD44附着在细胞表面,是这些细胞周围亲水性凝胶基质的骨架。炎症过程中HA的裂解导致细胞外基质厚度和粘度的降低。据报道,HA片段通过免疫细胞中的Toll样受体-(TLR-)2和/或TLR4触发先天免疫。我们质疑HA片段是否也调节平滑肌细胞样MC的免疫刺激能力。 LPS(TLR4-配体)和PAM3CysSK4(TLR2-配体)诱导MC中IL-6的分泌;高纯度无内毒素的HA <3000 Da高达50μg/ mL却没有。来自牛的睾丸透明质酸酶可直接在细胞培养物中将MC-HA消化成不同大小的HA片段。产生的HA片段未激活TLR4缺陷型MC,而TLR2缺陷型MC对透明质酸酶的LPS污染有反应,而不是对产生的HA片段有反应。透明质酸酶增加了TLR2-/-3 / -5配体对TLR4缺陷型MC中TLR受体的刺激作用,但不包括LPS污染引起的任何作用。补充肝素以剂量依赖的方式抑制每种刺激作用。我们得出的结论是,糖胺聚糖HA会形成细胞周冻质屏障,其覆盖表面受体(如TLR)。通过HA合成和降解以及细胞表面上HA受体的数量平衡的壁垒厚度和粘度,通过受体的可及性调节先天免疫。

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