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肝豆状核变性蛋白的腔环结合铜并需要其发挥蛋白活性。

A Luminal Loop of Wilson Disease Protein Binds Copper and Is Required for Protein Activity.

机构信息

Department of Chemistry; Konstanz Research School Chemical Biology, University of Konstanz, Konstanz, Germany.

Department of Biology and Biological Engineering, Chalmers University of Technology, Gothenburg, Sweden.

出版信息

Biophys J. 2018 Sep 18;115(6):1007-1018. doi: 10.1016/j.bpj.2018.07.040. Epub 2018 Aug 16.

Abstract

The copper-transporting ATPase ATP7B is essential for loading of copper ions to copper-dependent enzymes in the secretory pathway; its inactivation results in Wilson disease. In contrast to copper-ion uptake by the cytoplasmic domains, ATP7B-mediated copper-ion release in the Golgi has not been explored yet. We demonstrate here that a luminal loop in ATP7B, rich in histidine/methionine residues, binds reduced copper (Cu(I)) ions, and identified copper-binding residues play an essential role in ATP7B-mediated metal ion release. NMR experiments on short-peptide models demonstrate that three methionine and two histidine residues are specifically involved in Cu(I) ion binding; with these residues replaced by alanines, no Cu(I) ion interaction is detected. Although more than one Cu(I) ion can interact with the wild-type peptide, removing either all histidine or all methionine residues reduces the stoichiometry to one Cu(I) ion binding per peptide. Using a yeast complementation assay, we show that for efficient copper transport by full-length ATP7B, the complete set of histidine and methionine residues in the lumen loop are required. The replacement of histidine/methionine residues by alanines does not perturb overall ATP7B structure, as the localization of ATP7B variants in yeast cells matches that of the wild-type protein. Thus, in similarity to ATP7A, ATP7B also appears to have a luminal "exit" copper ion site.

摘要

铜转运 ATP 酶 ATP7B 对于将铜离子加载到分泌途径中的铜依赖性酶至关重要;其失活导致威尔逊病。与细胞质结构域中的铜离子摄取相反,ATP7B 介导向高尔基体内的铜离子释放尚未得到探索。我们在此证明,ATP7B 中的一个富含组氨酸/蛋氨酸残基的腔环结合还原态铜(Cu(I))离子,并确定铜结合残基在 ATP7B 介导的金属离子释放中起重要作用。针对短肽模型的 NMR 实验表明,三个蛋氨酸和两个组氨酸残基特异性参与 Cu(I) 离子结合;用丙氨酸取代这些残基,未检测到 Cu(I) 离子相互作用。尽管一个多肽可以与多个 Cu(I) 离子相互作用,但去除所有组氨酸或所有蛋氨酸残基会将结合物的化学计量比降低到每个多肽结合一个 Cu(I) 离子。使用酵母互补测定法,我们表明对于全长 ATP7B 的有效铜转运,腔环中的完整组氨酸和蛋氨酸残基是必需的。用丙氨酸取代组氨酸/蛋氨酸残基不会干扰 ATP7B 的整体结构,因为酵母细胞中 ATP7B 变体的定位与野生型蛋白的定位相匹配。因此,与 ATP7A 相似,ATP7B 似乎也具有腔内“出口”铜离子位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3f4/6139820/4c8c634de12a/gr1.jpg

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Biometals. 2017 Dec;30(6):823-840. doi: 10.1007/s10534-017-0058-2. Epub 2017 Oct 23.
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