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GLUT10 通过调节氧化还原平衡和线粒体功能来维持主要动脉的完整性。

GLUT10 maintains the integrity of major arteries through regulation of redox homeostasis and mitochondrial function.

机构信息

Institute of Cellular and Organismic Biology, Academia Sinica, Taipei 11529, Taiwan.

Institute of Molecular Medicine, National Tsing Hua University, Hsinchu 30013, Taiwan.

出版信息

Hum Mol Genet. 2018 Jan 15;27(2):307-321. doi: 10.1093/hmg/ddx401.

Abstract

Glucose transporter 10 (GLUT10) is a member of the GLUT family of membrane transporters, and mutations in this gene cause arterial tortuosity syndrome (ATS). However, the physiological role and regulation of GLUT10 in arteries remains unclear. To further understand its physiological roles in major arteries, we examined the regulatory mechanisms of GLUT10 in ASMCs and aortic tissues. Interestingly, we find that targeting of GLUT10 to mitochondria is increased in ASMCs under both stress and aging conditions, which enhances dehydroascorbic acid (DHA) uptake and maintains intracellular ascorbic acid (AA) levels. We further demonstrate that the targeting of GLUT10 to mitochondria is important to maintain redox homeostasis, mitochondrial structure and mitochondrial function in ASMCs. A missense mutation of GLUT10 (Glut10G128E) impairs mitochondrial targeting in ASMCs. Consequently, ASMCs isolated from Glut10G128E mice exhibit increased reactive oxygen species (ROS) levels, fragmented mitochondria and impaired mitochondrial function, as well as enhanced cell proliferation and migration. In vivo, mitochondrial structure is altered, and ROS levels are heightened in aortic tissues of Glut10G128E mice. Furthermore, increased number and disorganization of ASMCs, along with progressive arterial wall remodeling were observed in aortic tissues of Glut10G128E mice. These defects were coincident with elevated systolic blood pressure in aged Glut10G128E animals. Our results describe a novel mechanism that GLUT10 targeting to mitochondria under stress and aging condition has a critical role in maintaining AA levels, redox homeostasis and mitochondrial structure and function in ASMCs, which is likely to contribute to the maintenance of healthy vascular tissue.

摘要

葡萄糖转运蛋白 10(GLUT10)是 GLUT 家族膜转运蛋白的成员,该基因的突变会导致动脉扭曲综合征(ATS)。然而,GLUT10 在动脉中的生理作用和调节仍不清楚。为了进一步了解其在主要动脉中的生理作用,我们研究了 GLUT10 在血管平滑肌细胞(ASMC)和主动脉组织中的调节机制。有趣的是,我们发现,在应激和衰老条件下,ASMC 中线粒体靶向的 GLUT10 增加,这增强了脱氢抗坏血酸(DHA)的摄取并维持细胞内抗坏血酸(AA)水平。我们进一步证明,GLUT10 在线粒体中的靶向对于维持 ASMC 中的氧化还原平衡、线粒体结构和线粒体功能是重要的。GLUT10 的一个错义突变(Glut10G128E)会损害 ASMC 中线粒体的靶向。因此,来自 Glut10G128E 小鼠的 ASMC 表现出增加的活性氧(ROS)水平、线粒体碎片化和受损的线粒体功能以及增强的细胞增殖和迁移。在体内,Glut10G128E 小鼠的主动脉组织中线粒体结构发生改变,ROS 水平升高。此外,在 Glut10G128E 小鼠的主动脉组织中观察到 ASMC 数量增加和排列紊乱,以及动脉壁进行性重塑。这些缺陷与老龄 Glut10G128E 动物中升高的收缩压相一致。我们的结果描述了一种新的机制,即在应激和衰老条件下 GLUT10 靶向线粒体在线粒体结构和功能以及 ASMC 中的 AA 水平、氧化还原平衡的维持中具有关键作用,这可能有助于维持健康的血管组织。

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