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白细胞介素-4可诱导猪内皮细胞发生脂肪生成,而这反过来对于诱导针对补体介导损伤的保护作用至关重要。

Interleukin-4 induces lipogenesis in porcine endothelial cells, which in turn is critical for induction of protection against complement-mediated injury.

作者信息

Black S M, Schott M E, Benson B A, Rutherford M S, Young B K Levay, Dalmasso A P

机构信息

University of Minnesota, Department of Surgery, Minneapolis, Minnesota 55455, USA.

出版信息

Transplant Proc. 2008 Mar;40(2):638-40. doi: 10.1016/j.transproceed.2008.02.013.

Abstract

Interleukin (IL)-4 has been shown to induce protection in porcine vascular endothelial cells (ECs) from killing by human complement. This protection is dependent on the PI3K/Akt signaling pathway. In this study, we investigated mechanisms downstream of Akt and found that activation of the lipid biosynthesis pathway is required for protection from complement in ECs treated with IL-4. Cells incubated with IL-4 for 48 hours contained increased fatty acids and phospholipids but cholesterol was not increased when compared with medium-treated controls. The transcription factor SREBP-1, which regulates fatty acid synthesis, was found to be activated in extracts of ECs incubated with IL-4 for 6 hours. Finally, induction of protection from complement killing with IL-4 was fully prevented by the presence of the SREBP inhibitor 25-OH cholesterol. This study showed that IL-4 induces lipid biosynthesis in porcine ECs through activation of SREBP-1 and that the activation of this pathway is critical for IL-4 to induce protection of porcine ECs from killing by human complement. Further study of these mechanisms may provide new strategies for the prevention of complement-mediated vascular injury as it occurs in xenograft rejection.

摘要

白细胞介素(IL)-4已被证明可诱导猪血管内皮细胞(ECs)免受人类补体的杀伤。这种保护作用依赖于PI3K/Akt信号通路。在本研究中,我们研究了Akt下游的机制,发现脂质生物合成途径的激活是IL-4处理的ECs免受补体攻击所必需的。与用培养基处理的对照相比,用IL-4孵育48小时的细胞中脂肪酸和磷脂含量增加,但胆固醇含量未增加。发现调节脂肪酸合成的转录因子SREBP-1在与IL-4孵育6小时的ECs提取物中被激活。最后,SREBP抑制剂25-羟基胆固醇的存在完全阻止了IL-4诱导的对补体杀伤的保护作用。本研究表明,IL-4通过激活SREBP-1诱导猪ECs中的脂质生物合成,并且该途径的激活对于IL-4诱导猪ECs免受人类补体杀伤至关重要。对这些机制的进一步研究可能为预防异种移植排斥中发生的补体介导的血管损伤提供新策略。

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