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本文引用的文献

1
HIF-dependent induction of adenosine A2B receptor in hypoxia.缺氧时HIF依赖的腺苷A2B受体诱导作用
FASEB J. 2006 Nov;20(13):2242-50. doi: 10.1096/fj.06-6419com.
2
Role of A2B adenosine receptor signaling in adenosine-dependent pulmonary inflammation and injury.A2B 腺苷受体信号传导在腺苷依赖性肺部炎症和损伤中的作用。
J Clin Invest. 2006 Aug;116(8):2173-2182. doi: 10.1172/JCI27303.
3
Absence of NF-kappaB subunit p50 improves heart failure after myocardial infarction.NF-κB亚基p50缺失可改善心肌梗死后的心力衰竭。
FASEB J. 2006 Sep;20(11):1918-20. doi: 10.1096/fj.05-5133fje. Epub 2006 Jul 12.
4
The A2B adenosine receptor protects against inflammation and excessive vascular adhesion.A2B 腺苷受体可抵御炎症和过度的血管黏附。
J Clin Invest. 2006 Jul;116(7):1913-23. doi: 10.1172/JCI27933.
5
Methods to assess tissue permeability.评估组织通透性的方法。
Methods Mol Biol. 2006;341:111-7. doi: 10.1385/1-59745-113-4:111.
6
Overexpression of G protein-coupled receptors in cancer cells: involvement in tumor progression.G蛋白偶联受体在癌细胞中的过表达:与肿瘤进展的关系。
Int J Oncol. 2005 Nov;27(5):1329-39.
7
IKK/NF-kappaB signaling: balancing life and death--a new approach to cancer therapy.IKK/NF-κB信号传导:平衡生与死——癌症治疗的新方法
J Clin Invest. 2005 Oct;115(10):2625-32. doi: 10.1172/JCI26322.
8
Cutting edge: bacterial modulation of epithelial signaling via changes in neddylation of cullin-1.前沿:细菌通过改变cullin-1的NEDD化修饰来调节上皮细胞信号传导
J Immunol. 2005 Oct 1;175(7):4194-8. doi: 10.4049/jimmunol.175.7.4194.
9
Regulation of immune cells by local-tissue oxygen tension: HIF1 alpha and adenosine receptors.局部组织氧张力对免疫细胞的调节作用:低氧诱导因子1α与腺苷受体
Nat Rev Immunol. 2005 Sep;5(9):712-21. doi: 10.1038/nri1685.
10
Ubiquitin signalling in the NF-kappaB pathway.核因子κB信号通路中的泛素信号传导
Nat Cell Biol. 2005 Aug;7(8):758-65. doi: 10.1038/ncb0805-758.

通过腺苷介导的cullin-1去泛素化实现对缺氧的抗炎适应性。

Antiinflammatory adaptation to hypoxia through adenosine-mediated cullin-1 deneddylation.

作者信息

Khoury Joseph, Ibla Juan C, Neish Andrew S, Colgan Sean P

机构信息

Department of Anesthesiology, Perioperative and Pain Medicine, Children's Hospital Boston, Harvard Medical School, Boston, MA 02115, USA.

出版信息

J Clin Invest. 2007 Mar;117(3):703-11. doi: 10.1172/JCI30049. Epub 2007 Feb 22.

DOI:10.1172/JCI30049
PMID:17318263
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1797604/
Abstract

A major adaptive pathway for hypoxia is hypoxic preconditioning (HPC), a form of endogenous protection that renders cells tolerant to severe challenges of hypoxia. We sought to define the antiinflammatory properties of HPC. cDNA microarray analysis of lung tissue from mice subjected to hypoxia or HPC identified a cluster of NF-kappaB-regulated genes whose expression is attenuated by HPC. Studies using an NF-kappaB luciferase reporter assay confirmed a significant suppression of NF-kappaB activation during HPC. HPC-elicited activity was conferrable, as a soluble supernatant from HPC-treated cells, and the active fraction was purified and identified as adenosine (Ado). Guided by recent studies demonstrating bacterial inhibition of NF-kappaB through cullin-1 (Cul-1) deneddylation, we found a dose-dependent deneddylation of Cul-1 by Ado receptor stimulation predominantly mediated by the Ado A2B receptor subtype. Further, siRNA-mediated repression of CSN5, a subunit of the COP9 signalosome responsible for deneddylation of Cul-1, partially reversed HPC-mediated inhibition of NF-kappaB. Cul-1 deneddylation was evident in a murine model of HPC and lost in animals lacking extracellular Ado (Cd73-/- mice). Taken together, these results demonstrate that HPC induces extracellular accumulation of Ado and suppresses NF-kappaB activity through deneddylation of Cul-1. These results define a molecular regulatory pathway by which Ado provides potent antiinflammatory properties.

摘要

缺氧的一个主要适应性途径是缺氧预处理(HPC),这是一种内源性保护形式,可使细胞耐受严重的缺氧挑战。我们试图确定HPC的抗炎特性。对经历缺氧或HPC的小鼠肺组织进行cDNA微阵列分析,确定了一组NF-κB调控的基因,其表达因HPC而减弱。使用NF-κB荧光素酶报告基因检测的研究证实,在HPC期间NF-κB激活受到显著抑制。HPC诱导的活性是可传递的,作为来自HPC处理细胞的可溶性上清液,活性部分被纯化并鉴定为腺苷(Ado)。近期研究表明细菌通过cullin-1(Cul-1)去泛素化抑制NF-κB,在此研究的指导下,我们发现Ado受体刺激导致Cul-1剂量依赖性去泛素化,主要由Ado A2B受体亚型介导。此外,小干扰RNA介导的COP9信号小体亚基CSN5的抑制,CSN5负责Cul-1的去泛素化,部分逆转了HPC介导的NF-κB抑制。在HPC小鼠模型中Cul-1去泛素化明显,而在缺乏细胞外Ado的动物(Cd73-/-小鼠)中则消失。综上所述,这些结果表明HPC诱导Ado在细胞外积累,并通过Cul-1去泛素化抑制NF-κB活性。这些结果定义了一条分子调节途径,通过该途径Ado具有强大的抗炎特性。