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Adenosine A2A receptor (A2AR) is a fine-tune regulator of the collagen1:collagen3 balance

机译:腺苷A2A受体(A2AR)是胶原1:胶原3平衡的微调调节剂

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摘要

Adenosine is a potent endogenous anti-inflammatory and immunosuppressive metabolite that is a potent modulator of tissue repair. However, the adenosine A2A receptor (A2AR)-mediated promotion of collagen synthesis is detrimental in settings such as scarring and scleroderma. The signaling cascade from A2AR stimulation to increased collagen production is complex and obscure, not least because cAMP and its downstream molecules PKA and Epac1 have been reported to inhibit collagen production. We therefore examined A2AR-stimulated signaling for collagen production by normal human dermal fibroblasts (NHDF). Collagen1 (Col1) and collagen3 (Col3) content after A2AR activation by was studied by western blotting. Contribution of PKA and Epac was analyzed by the PKA inhibitor PKI and by knockdowns of the PKA-Cα, -Cβ, -Cγ, Epac1, and Epac2. stimulates Col1 expression at significantly lower concentrations than those required to stimulate Col3 expression. A2AR stimulates Col1 expression by a PKA-dependent mechanism since PKA inhibition or PKA-Cα and -Cβ knockdown prevents A2AR-mediated Col1 increase. In contrast, A2AR represses Col3 via PKA but stimulates both Col1 and Col3 via an Epac2-dependent mechanism. A2AR stimulation with at 0.1 μM increased Col3 expression only upon PKA blockade. A2AR activation downstream signaling for Col1 and Col3 expression proceeds via two distinct pathways with varying sensitivity to cAMP activation; more highly cAMP-sensitive PKA activation stimulates Col1 expression, and less cAMP-sensitive Epac activation promotes both Col1 and Col3 expression. These observations may explain the dramatic change in Col1:Col3 ratio in hypertrophic and immature scars, where adenosine is present in higher concentrations than in normal skin.Electronic supplementary materialThe online version of this article (doi:10.1007/s11302-013-9368-1) contains supplementary material, which is available to authorized users.
机译:腺苷是有效的内源性抗炎和免疫抑制代谢产物,是组织修复的有效调节剂。但是,腺苷A2A受体(A2AR)介导的胶原蛋白合成促进在瘢痕形成和硬皮病等环境中有害。从A2AR刺激到增加胶原蛋白生成的信号级联是复杂且晦涩的,尤其是因为据报道cAMP及其下游分子PKA和Epac1抑制了胶原蛋白的生成。因此,我们检查了正常人皮肤成纤维细胞(NHDF)的A2AR刺激的胶原蛋白产生信号。通过蛋白质印迹研究了A2AR激活后胶原1(Col1)和胶原3(Col3)的含量。通过PKA抑制剂PKI以及PKA-Cα,-Cβ,-Cγ,Epac1和Epac2的敲低分析了PKA和Epac的贡献。刺激Col1表达的浓度明显低于刺激Col3表达所需的浓度。 A2AR通过PKA依赖性机制刺激Col1表达,因为PKA抑制或PKA-Cα和-Cβ抑制可阻止A2AR介导的Col1增加。相反,A2AR通过PKA抑制Col3,但通过Epac2依赖性机制刺激Col1和Col3。仅在PKA阻断时,以0.1μM的A2AR刺激才能增加Col3表达。 Col1和Col3表达的A2AR激活下游信号传导通过两种不同的途径进行,对cAMP激活的敏感性各不相同。对cAMP敏感的PKA激活程度越高,刺激Col1的表达越高;对cAMP敏感的Epac激活程度越低,则同时促进Col1和Col3的表达。这些观察结果可以解释肥大性和未成熟疤痕中Col1:Col3比率的急剧变化,其中腺苷的浓度高于正常皮肤中的浓度。电子补充材料本文的在线版本(doi:10.1007 / s11302-013-9368-1 )包含补充材料,授权用户可以使用。

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