Yuan Sai, Korolnek Tamara, Kim Byung-Eun
Department of Animal and Avian Sciences, University of Maryland, College Park, MD, United States.
Biological Sciences Graduate Program, College Park, MD, United States.
Front Cell Dev Biol. 2022 Apr 1;10:856300. doi: 10.3389/fcell.2022.856300. eCollection 2022.
Copper (Cu) is an essential trace element for key biochemical reactions. Dietary or genetic copper deficiencies are associated with anemia, cardiomyopathy, and neurodegeneration. The essential requirement for copper in humans is illustrated by Menkes disease, a fatal neurodegenerative disorder of early childhood caused by mutations in the ATP7A copper transporter. Recent groundbreaking studies have demonstrated that a copper delivery small molecule compound, elesclomol (ES), is able to substantially ameliorate pathology and lethality in a mouse model of Menkes disease when injected as an ES-Cu complex. It is well appreciated that drugs administered through oral means are more convenient with better efficacy than injection methods. Here we show, using genetic models of copper-deficient and mice, that dietary ES supplementation fully rescues copper deficiency phenotypes. Worms lacking either the homolog of the CTR1 copper importer or the ATP7 copper exporter showed normal development when fed ES. Oral gavage with ES rescued intestine-specific knockout mice from early postnatal lethality without additional copper supplementation. Our findings reveal that ES facilitates copper delivery from dietary sources independent of the intestinal copper transporter CTR1 and provide insight into oral administration of ES as an optimal therapeutic for Menkes disease and possibly other disorders of copper insufficiency.
铜(Cu)是关键生化反应所必需的微量元素。饮食中缺乏铜或遗传性铜缺乏与贫血、心肌病和神经退行性变有关。门克斯病说明了人体对铜的基本需求,这是一种由ATP7A铜转运蛋白突变引起的幼儿致命性神经退行性疾病。最近的开创性研究表明,一种铜传递小分子化合物艾力司莫(ES),当作为ES-Cu复合物注射时,能够显著改善门克斯病小鼠模型的病理状况和致死率。众所周知,通过口服方式给药的药物比注射方式更方便且疗效更好。在这里,我们使用铜缺乏小鼠的遗传模型表明,饮食中补充ES能完全挽救铜缺乏表型。缺乏CTR1铜导入蛋白或ATP7铜输出蛋白同源物的蠕虫在喂食ES时表现出正常发育。口服ES能使肠道特异性敲除小鼠在不额外补充铜的情况下从出生后早期致死中获救。我们的研究结果表明,ES促进了从饮食来源的铜传递,独立于肠道铜转运蛋白CTR1,并为口服ES作为门克斯病以及可能其他铜缺乏症的最佳治疗方法提供了见解。