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威尔逊氏病:不仅仅是一种铜紊乱疾病。对威尔逊氏病模型的分析揭示了铜与脂质代谢之间的联系。

Wilson disease: not just a copper disorder. Analysis of a Wilson disease model demonstrates the link between copper and lipid metabolism.

作者信息

Huster Dominik, Lutsenko Svetlana

机构信息

Department of Medicine II, University of Leipzig, 04103 Leipzig, Germany.

出版信息

Mol Biosyst. 2007 Dec;3(12):816-24. doi: 10.1039/b711118p. Epub 2007 Sep 18.

Abstract

Copper is an essential nutrient required for normal growth and development in many organisms. In humans, the disruption of normal copper absorption and excretion is associated with two severe disorders, known as Menkes disease and Wilson disease, respectively. The consequences of insufficient copper supply that is characteristic of Menkes disease have been largely linked to the inactivation of key metabolic enzymes, although other non-enzymatic processes may also be involved. In contrast, the consequences of copper accumulation in Wilson disease have been generally ascribed to copper-induced radical-mediated damage. Recent studies suggest that the cellular response to copper overload, particularly at the early stages of copper accumulation, involves more specific mechanisms and specific pathways. Genetic and metabolic characterization of animal models of Wilson disease has provided new insights into the pre-symptomatic effects of copper that is accumulated in the liver. The studies have uncovered unexpected links between copper metabolism, cell-cycle machinery, and cholesterol biosynthesis. We discuss these new findings along with the earlier reports on dietary effects of copper. Together these experiments suggest a tight link between lipid and copper metabolism and identify several candidate proteins that may mediate the cross-talk between copper status and lipid metabolism.

摘要

铜是许多生物体正常生长和发育所需的必需营养素。在人类中,正常铜吸收和排泄的紊乱分别与两种严重疾病相关,即门克斯病和威尔逊病。门克斯病的特征是铜供应不足,其后果主要与关键代谢酶的失活有关,尽管其他非酶过程可能也会涉及。相比之下,威尔逊病中铜积累的后果通常归因于铜诱导的自由基介导的损伤。最近的研究表明,细胞对铜过载的反应,特别是在铜积累的早期阶段,涉及更具体的机制和特定途径。威尔逊病动物模型的遗传和代谢特征为肝脏中积累的铜的症状前效应提供了新的见解。这些研究揭示了铜代谢、细胞周期机制和胆固醇生物合成之间意想不到的联系。我们将这些新发现与早期关于铜的饮食影响的报告一起进行讨论。这些实验共同表明脂质和铜代谢之间存在紧密联系,并确定了几种可能介导铜状态与脂质代谢之间相互作用的候选蛋白。

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