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系统性敲除 Atp7b 可改变 Wilson 病小鼠模型中肝细胞对铜过载的反应。

Systemic deletion of Atp7b modifies the hepatocytes' response to copper overload in the mouse models of Wilson disease.

机构信息

Department of Physiology, Johns Hopkins Medical Institutes, 725 N Wolfe street, Baltimore, MD, 21205, USA.

Core Analysis Unit, Johns Hopkins Medical Institutes, Baltimore, MD, 21205, USA.

出版信息

Sci Rep. 2021 Mar 11;11(1):5659. doi: 10.1038/s41598-021-84894-3.

Abstract

Wilson disease (WD) is caused by inactivation of the copper transporter Atp7b and copper overload in tissues. Mice with Atp7b deleted either globally (systemic inactivation) or only in hepatocyte recapitulate various aspects of human disease. However, their phenotypes vary, and neither the common response to copper overload nor factors contributing to variability are well defined. Using metabolic, histologic, and proteome analyses in three Atp7b-deficient mouse strains, we show that global inactivation of Atp7b enhances and specifically modifies the hepatocyte response to Cu overload. The loss of Atp7b only in hepatocytes dysregulates lipid and nucleic acid metabolisms and increases the abundance of respiratory chain components and redox balancing enzymes. In global knockouts, independently of their background, the metabolism of lipid, nucleic acid, and amino acids is inhibited, respiratory chain components are down-regulated, inflammatory response and regulation of chromosomal replication are enhanced. Decrease in glucokinase and lathosterol oxidase and elevation of mucin-13 and S100A10 are observed in all Atp7b mutant strains and reflect the extent of liver injury. The magnitude of proteomic changes in Atp7b animals inversely correlates with the metallothioneins levels rather than liver Cu content. These findings facilitate identification of WD-specific metabolic and proteomic changes for diagnostic and treatment.

摘要

威尔逊病(WD)是由铜转运体 Atp7b 的失活和组织内铜过载引起的。Atp7b 全局(全身失活)或仅在肝细胞中缺失的小鼠可再现人类疾病的各个方面。然而,它们的表型存在差异,且铜过载的共同反应以及导致变异性的因素均未得到很好的定义。通过对三种 Atp7b 缺陷型小鼠品系进行代谢、组织学和蛋白质组学分析,我们表明 Atp7b 的全局失活增强并特异性改变了肝细胞对 Cu 过载的反应。仅在肝细胞中缺失 Atp7b 会扰乱脂质和核酸代谢,并增加呼吸链成分和氧化还原平衡酶的丰度。在全局敲除中,无论其背景如何,脂质、核酸和氨基酸的代谢均受到抑制,呼吸链成分下调,炎症反应和染色体复制的调节增强。在所有 Atp7b 突变株中均观察到葡激酶和羊毛甾醇氧化酶的减少以及粘蛋白-13 和 S100A10 的升高,这反映了肝损伤的程度。Atp7b 动物的蛋白质组变化幅度与金属硫蛋白水平而非肝铜含量呈反比。这些发现有助于鉴定 WD 的特异性代谢和蛋白质组变化,用于诊断和治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c9a/7952580/a7071b48777f/41598_2021_84894_Fig1_HTML.jpg

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