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脂肪组织中 C/EBP 家族转录因子的抑制导致脂肪营养不良。

Suppression of the C/EBP family of transcription factors in adipose tissue causes lipodystrophy.

机构信息

Laboratory of Metabolism, National Cancer Institute, National Institutes of Health, Building 37, Room 3128, Bethesda, Maryland 20892, USA.

出版信息

J Mol Endocrinol. 2011 Apr 15;46(3):175-92. doi: 10.1530/JME-10-0172. Print 2011 Jun.

Abstract

Adipose-specific inactivation of both AP-1 and CCAAT-enhancer-binding protein (C/EBP) families of B-ZIP transcription factors in transgenic mice causes severe lipoatrophy. To evaluate whether inactivation of only C/EBP members was critical for lipoatrophy, A-C/EBP, a dominant-negative protein that specifically inhibits the DNA binding of the C/EBP members, was expressed in adipose tissue. For the first 2 weeks after birth, aP2-A-C/EBP mice had no white adipose tissue (WAT), drastically reduced brown adipose tissue (BAT), and exhibited marked hepatic steatosis, hyperinsulinemia, and hyperlipidemia. However, WAT appeared during the third week, coinciding with significantly improved metabolic functioning. In adults, BAT remained reduced, causing cold intolerance. At 30 weeks, the aP2-A-C/EBP mice had only 35% reduced WAT, with clear morphological signs of lipodystrophy in subcutaneous fat. Circulating leptin and adiponectin levels were less than the wild-type levels, and these mice exhibited impaired triglyceride clearance. Insulin resistance, glucose intolerance, and reduced free fatty acid release in response to β3-adrenergic agonist suggest improper functioning of the residual WAT. Gene expression analysis of inguinal WAT identified reduced mRNA levels of several enzymes involved in fatty acid synthesis and glucose metabolism that are known C/EBPα transcriptional targets. There were increased levels for genes involved in inflammation and muscle differentiation. However, when dermal fibroblasts from aP2-A-C/EBP mice were differentiated into adipocytes in tissue culture, muscle markers were elevated more than the inflammatory markers. These results demonstrate that the C/EBP family is essential for adipose tissue development during the early postnatal period, the regulation of glucose and lipid homeostasis in adults, and the suppression of the muscle lineage.

摘要

脂肪特异性敲除 AP-1 和 CCAAT 增强子结合蛋白(C/EBP)家族的 B-ZIP 转录因子在转基因小鼠中导致严重的脂肪萎缩。为了评估仅 C/EBP 成员的失活是否对脂肪萎缩至关重要,在脂肪组织中表达了一种显性负性蛋白 A-C/EBP,该蛋白特异性抑制 C/EBP 成员的 DNA 结合。在出生后的前 2 周,aP2-A-C/EBP 小鼠没有白色脂肪组织(WAT),棕色脂肪组织(BAT)明显减少,并表现出明显的肝脂肪变性、高胰岛素血症和高血脂症。然而,在第三周 WAT 出现,同时代谢功能显著改善。在成年期,BAT 仍然减少,导致不耐寒。在 30 周时,aP2-A-C/EBP 小鼠的 WAT 减少了 35%,皮下脂肪有明显的脂肪营养不良的形态学迹象。循环瘦素和脂联素水平低于野生型水平,这些小鼠表现出甘油三酯清除受损。胰岛素抵抗、葡萄糖不耐受和对β3-肾上腺素能激动剂的游离脂肪酸释放减少表明残留 WAT 的功能不当。腹股沟 WAT 的基因表达分析确定了几种参与脂肪酸合成和葡萄糖代谢的酶的 mRNA 水平降低,这些酶是已知的 C/EBPα 转录靶点。参与炎症和肌肉分化的基因水平升高。然而,当来自 aP2-A-C/EBP 小鼠的真皮成纤维细胞在组织培养中分化为脂肪细胞时,肌肉标志物的升高超过了炎症标志物。这些结果表明,C/EBP 家族在出生后早期脂肪组织发育、成年期葡萄糖和脂质稳态调节以及肌肉谱系抑制中是必不可少的。

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