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首页> 外文期刊>Journal of Bioenergetics and Biomembranes >Menkes Copper-Translocating P-type ATPase (ATP7A): Biochemical and Cell Biology Properties, and Role in Menkes Disease
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Menkes Copper-Translocating P-type ATPase (ATP7A): Biochemical and Cell Biology Properties, and Role in Menkes Disease

机译:Menkes铜转运P型ATP酶(ATP7A):生化和细胞生物学特性,以及在Menkes疾病中的作用

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摘要

The Menkes copper-translocating P-type ATPase (ATP7A; MNK) is a ubiquitous protein that regulates the absorption of copper in the gastrointestinal tract. Inside cells the protein has a dual function: it delivers copper to cuproenzymes in the Golgi compartment and effluxes excess copper. The latter property is achieved through copper-dependent vesicular trafficking of the Menkes protein to the plasma membrane of the cell. The trafficking mechanism and catalytic activity combine to facilitate absorption and intercellular transport of copper. The mechanism of catalysis and copper-dependent trafficking of the Menkes protein are the subjects of this review. Menkes disease, a systemic copper deficiency disorder, is caused by mutations in the gene encoding the Menkes protein. The effect of these mutations on the catalytic cycle and the cell biology of the Menkes protein, as well as predictions of the effect of particular mutant MNKs on observed Menkes disease symptoms will also be discussed.
机译:Menkes铜易位P型ATP酶(ATP7A; MNK)是一种普遍存在的蛋白质,可调节铜在胃肠道中的吸收。在细胞内部,蛋白质具有双重功能:将铜传递到高尔基区的铜酶中,并排出过量的铜。后一特性是通过Menkes蛋白的铜依赖性水泡运输到细胞的质膜来实现的。转运机制和催化活性相结合以促进铜的吸收和细胞间转运。 Menkes蛋白的催化机制和铜依赖性运输是本综述的主题。 Menkes疾病是系统性的铜缺乏症,是由编码Menkes蛋白的基因突变引起的。还讨论了这些突变对Menkes蛋白催化周期和细胞生物学的影响,以及对特定突变MNK对观察到的Menkes疾病症状的影响的预测。

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