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髓系细胞中的自噬缺陷会增加对肥胖诱导的糖尿病和实验性结肠炎的易感性。

Autophagy deficiency in myeloid cells increases susceptibility to obesity-induced diabetes and experimental colitis.

作者信息

Lee Hae-Youn, Kim Jinyoung, Quan Wenying, Lee June-Chul, Kim Min-Soo, Kim Seok-Hyung, Bae Jin-Woo, Hur Kyu Yeon, Lee Myung-Shik

机构信息

a Departments of Medicine , Samsung Medical Center, Sungkyunkwan University School of Medicine , Seoul , Korea.

b Severance Biomedical Science Institute and Department of Internal Medicine , Yonsei University College of Medicine , Seoul , Korea.

出版信息

Autophagy. 2016 Aug 2;12(8):1390-403. doi: 10.1080/15548627.2016.1184799. Epub 2016 Jun 23.

Abstract

Autophagy, which is critical for the proper turnover of organelles such as endoplasmic reticulum and mitochondria, affects diverse aspects of metabolism, and its dysregulation has been incriminated in various metabolic disorders. However, the role of autophagy of myeloid cells in adipose tissue inflammation and type 2 diabetes has not been addressed. We produced mice with myeloid cell-specific deletion of Atg7 (autophagy-related 7), an essential autophagy gene (Atg7 conditional knockout [cKO] mice). While Atg7 cKO mice were metabolically indistinguishable from control mice, they developed diabetes when bred to ob/w mice (Atg7 cKO-ob/ob mice), accompanied by increases in the crown-like structure, inflammatory cytokine expression and inflammasome activation in adipose tissue. Mφs (macrophages) from Atg7 cKO mice showed significantly higher interleukin 1 β release and inflammasome activation in response to a palmitic acid plus lipopolysaccharide combination. Moreover, a decrease in the NAD(+):NADH ratio and increase in intracellular ROS content after treatment with palmitic acid in combination with lipopolysaccharide were more pronounced in Mφs from Atg7 cKO mice, suggesting that mitochondrial dysfunction in autophagy-deficient Mφs leads to an increase in lipid-induced inflammasome and metabolic deterioration in Atg7 cKO-ob/ob mice. Atg7 cKO mice were more susceptible to experimental colitis, accompanied by increased colonic cytokine expression, T helper 1 skewing and systemic bacterial invasion. These results suggest that autophagy of Mφs is important for the control of inflammasome activation in response to metabolic or extrinsic stress, and autophagy deficiency in Mφs may contribute to the progression of metabolic syndrome associated with lipid injury and colitis.

摘要

自噬对于内质网和线粒体等细胞器的正常更新至关重要,影响代谢的各个方面,其失调与多种代谢紊乱有关。然而,髓样细胞自噬在脂肪组织炎症和2型糖尿病中的作用尚未得到探讨。我们制备了髓样细胞特异性缺失Atg7(自噬相关7)的小鼠,Atg7是一种必需的自噬基因(Atg7条件性敲除[cKO]小鼠)。虽然Atg7 cKO小鼠在代谢上与对照小鼠没有区别,但与ob/ob小鼠杂交时(Atg7 cKO-ob/ob小鼠)会发生糖尿病,同时脂肪组织中的冠状结构、炎性细胞因子表达和炎性小体激活增加。来自Atg7 cKO小鼠的巨噬细胞(Mφs)对棕榈酸加脂多糖组合的反应显示出显著更高的白细胞介素1β释放和炎性小体激活。此外,在Atg7 cKO小鼠的Mφs中,棕榈酸与脂多糖联合处理后NAD(+):NADH比值降低和细胞内ROS含量增加更为明显,这表明自噬缺陷的Mφs中的线粒体功能障碍导致Atg7 cKO-ob/ob小鼠脂质诱导的炎性小体增加和代谢恶化。Atg7 cKO小鼠更容易患实验性结肠炎,伴有结肠细胞因子表达增加、辅助性T细胞1偏向和全身细菌入侵。这些结果表明,Mφs的自噬对于响应代谢或外在应激控制炎性小体激活很重要,Mφs中的自噬缺陷可能导致与脂质损伤和结肠炎相关的代谢综合征进展。

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