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通过 Aoc3 基因缺失导致缺乏 VAP-1/SSAO 的小鼠肥胖在表达缺乏胺氧化酶活性的突变血管黏附蛋白-1(VAP-1)的小鼠中得到重现。

Obesity of mice lacking VAP-1/SSAO by Aoc3 gene deletion is reproduced in mice expressing a mutated vascular adhesion protein-1 (VAP-1) devoid of amine oxidase activity.

机构信息

Institute of Metabolic and Cardiovascular Diseases, INSERM, UMR1048, Toulouse, France.

University of Toulouse, UMR1048, Paul Sabatier University, Toulouse, France.

出版信息

J Physiol Biochem. 2021 Feb;77(1):141-154. doi: 10.1007/s13105-020-00756-y. Epub 2020 Jul 25.

Abstract

The product of Aoc3 gene is known as vascular adhesion protein-1 (VAP-1), a glycoprotein contributing to leukocyte extravasation and exhibiting semicarbazide-sensitive amine oxidase activity (SSAO). Regarding the immune functions of VAP-1/SSAO, it is known that mice bearing Aoc3 gene knock-out (AOC3KO) exhibit defects in leukocyte migration similar to those of mice expressing a mutated VAP-1 lacking functional SSAO activity (knock-in, AOC3KI). However, it has not been reported whether these models differ regarding other disturbances. Thus, we further compared endocrine-metabolic phenotypes of AOC3KO and AOC3KI mice to their respective control. Special attention was paid on adiposity, glucose and lipid handling, since VAP-1/SSAO is highly expressed in adipose tissue (AT). In both mouse lines, no tissue SSAO activity was found, while Aoc3 mRNA was absent in AOC3KO only. Although food consumption was unchanged, both AOC3KO and AOC3KI mice were heavier and fatter than their respective controls. Other alterations commonly found in adipocytes from both lines were loss of benzylamine insulin-like action with unchanged insulin lipogenic responsiveness and adiponectin expression. A similar downregulation of inflammatory markers (CD45, IL6) was found in AT. Glucose handling and liver mass remained unchanged, while circulating lipid profile was distinctly altered, with increased cholesterol in AOC3KO only. These results suggest that the lack of oxidase activity found in AOC3KI is sufficient to reproduce the metabolic disturbances observed in AOC3KO mice, save those related with cholesterol transport. Modulation of SSAO activity therefore constitutes a potential target for the treatment of cardiometabolic diseases, especially obesity when complicated by low-grade inflammation.

摘要

Aoc3 基因的产物被称为血管黏附蛋白-1(VAP-1),是一种糖蛋白,有助于白细胞渗出,并具有半卡巴肼敏感胺氧化酶活性(SSAO)。关于 VAP-1/SSAO 的免疫功能,已知携带 Aoc3 基因敲除(AOC3KO)的小鼠表现出类似于表达缺乏功能性 SSAO 活性的突变 VAP-1(基因敲入,AOC3KI)的小鼠的白细胞迁移缺陷。然而,尚未报道这些模型在其他干扰方面是否存在差异。因此,我们进一步比较了 AOC3KO 和 AOC3KI 小鼠及其各自对照的内分泌代谢表型。由于 VAP-1/SSAO 在脂肪组织(AT)中高度表达,因此特别关注肥胖、葡萄糖和脂质处理。在这两种小鼠品系中,均未发现组织 SSAO 活性,而只有 AOC3KO 中不存在 Aoc3 mRNA。尽管食物消耗没有变化,但 AOC3KO 和 AOC3KI 小鼠均比各自的对照重且胖。这两种系的脂肪细胞中还发现了其他常见的改变,包括苯甲胺胰岛素样作用丧失而胰岛素脂肪生成反应性和脂联素表达不变。AT 中也发现了类似的炎症标志物(CD45、IL6)下调。葡萄糖处理和肝质量保持不变,而循环脂质谱则明显改变,仅在 AOC3KO 中胆固醇增加。这些结果表明,在 AOC3KI 中发现的氧化酶活性缺失足以重现 AOC3KO 小鼠中观察到的代谢紊乱,除了与胆固醇转运相关的紊乱。因此,SSAO 活性的调节可能成为治疗代谢性心血管疾病的潜在靶点,尤其是肥胖伴低度炎症时。

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