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首页> 外文期刊>The Journal of biological chemistry >Low Dose Ultraviolet B Irradiation Increases Hyaluronan Synthesis in Epidermal Keratinocytes via Sequential Induction of Hyaluronan Synthases Has1–3 Mediated by p38 and Ca2+/Calmodulin-dependent Protein Kinase II (CaMKII) Signaling
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Low Dose Ultraviolet B Irradiation Increases Hyaluronan Synthesis in Epidermal Keratinocytes via Sequential Induction of Hyaluronan Synthases Has1–3 Mediated by p38 and Ca2+/Calmodulin-dependent Protein Kinase II (CaMKII) Signaling

机译:低剂量紫外线B辐照通过通过P38和Ca2 + /钙调蛋白依赖性蛋白激酶II(Camkii)信号传导的透明质酸合酶的顺序诱导,通过透明质酸合酶的顺序诱导增加表皮角蛋白酶细胞的透明质酸合成。

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Hyaluronan, a major epidermal extracellular matrix component, responds strongly to different kinds of injuries. This also occurs by UV radiation, but the mechanisms involved are poorly understood. The effects of a single ultraviolet B (UVB) exposure on hyaluronan content and molecular mass, and expression of genes involved in hyaluronan metabolism were defined in monolayer and differentiated, organotypic three-dimensional cultures of rat epidermal keratinocytes. The signals regulating the response were characterized using specific inhibitors and Western blotting. In monolayer cultures, UVB increased hyaluronan synthase Has1 mRNA already 4 h postexposure, with a return to control level by 24 h. In contrast, Has2 and Has3 were persistently elevated from 8 h onward. Silencing of Has2 and especially Has3 decreased the UVB-induced accumulation of hyaluronan. p38 and Ca2+/calmodulin-dependent protein kinase II pathways were found to be involved in the UVB-induced up-regulation of Has2 and Has3 expression, respectively, and their inhibition reduced hyaluronan deposition. However, the expressions of the hyaluronan-degrading enzymes Hyal1 and Hyal2 and the hyaluronan receptor Cd44 were also up-regulated by UVB. In organotypic cultures, UVB treatment also resulted in increased expression of both Has and Hyal genes and shifted hyaluronan toward a smaller size range. Histochemical stainings indicated localized losses of hyaluronan in the epidermis. The data show that exposure of keratinocytes to acute, low dose UVB increases hyaluronan synthesis via up-regulation of Has2 and Has3. The simultaneously enhanced catabolism of hyaluronan demonstrates the complexity of the UVB-induced changes. Nevertheless, enhanced hyaluronan metabolism is an important part of the adaptation of keratinocytes to radiation injury.
机译:一位主要表皮细胞外基质组分透明质酸,对不同种类的伤害反应。这也发生了紫外线辐射,但涉及的机制被理解得很差。单层和分化的大鼠表皮角质形成细胞的单层和分化的有机型三维培养,定义单个紫外线B(UVB)暴露对透明质酸含量和分子量的影响,以及参与透明质酸代谢的基因的表达。使用特异性抑制剂和蛋白质印迹来表征调节响应的信号。在单层培养物中,UVB增加透明质酸合酶Hase1 mRNA已经4小时后曝光,恢复到控制水平24小时。相反,HAS2和HAS3持续高出8小时。 HAS2的沉默尤其是HAS3降低了透明质酸的UVB诱导的积累。发现P38和CA2 + /钙调蛋白依赖性蛋白激酶II途径分别参与HAS2和HAS3表达的UVB诱导的上调,并抑制透明质酸沉积沉积。然而,透明质酸降解酶缘缘和透明度和透明质酸受体CD44的表达也通过UVB上调。在有机型培养物中,UVB治疗也导致患有缘和缘基因的表达增加,并将透明质酸朝向较小的尺寸范围。组织化学染色表明表皮中透明质酸的局部损失。数据显示,异畸形细胞暴露于急性,低剂量UVB通过HAS2和HAS3的上调增加透明质酸合成。同时增强透明质酸的分解代谢证明了UVB诱导的变化的复杂性。然而,增强的透明质酸代谢是一种重要的角蛋白酶适应辐射损伤的重要组成部分。

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