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首页> 外文期刊>The international journal of biochemistry and cell biology >Phosphorylation regulates copper-responsive trafficking of the Menkes copper transporting P-type ATPase.
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Phosphorylation regulates copper-responsive trafficking of the Menkes copper transporting P-type ATPase.

机译:磷酸化调节Menkes铜转运P型ATP酶对铜的响应性运输。

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摘要

The Menkes copper-translocating P-type ATPase (ATP7A) is a critical copper transport protein functioning in systemic copper absorption and supply of copper to cuproenzymes in the secretory pathway. Mutations in ATP7A can lead to the usually lethal Menkes disease. ATP7A function is regulated by copper-responsive trafficking between the trans-Golgi Network and the plasma membrane. We have previously reported basal and copper-responsive kinase phosphorylation of ATP7A but the specific phosphorylation sites had not been identified. As copper stimulates both trafficking and phosphorylation of ATP7A we aimed to identify all the specific phosphosites and to determine whether trafficking and phosphorylation are linked. We identified twenty in vivo phosphorylation sites in the human ATP7A and eight in hamster, all clustered within the N- and C-terminal cytosolic domains. Eight sites were copper-responsive and hence candidates for regulating copper-responsive trafficking or catalytic activity. Mutagenesis of the copper-responsive phosphorylation site Serine-1469 resulted in mislocalization of ATP7A in the presence of added copper in both polarized (Madin Darby canine kidney) and non-polarized (Chinese Hamster Ovary) cells, strongly suggesting that phosphorylation of specific serine residues is required for copper-responsive ATP7A trafficking to the plasma membrane. A constitutively phosphorylated site, Serine-1432, when mutated to alanine also resulted in mislocalization in the presence of added copper in polarized Madin Darby kidney cells. These studies demonstrate that phosphorylation of specific serine residues in ATP7A regulates its sub-cellular localization and hence function and will facilitate identification of the kinases and signaling pathways involved in regulating this pivotal copper transporter.
机译:Menkes铜转运P型ATP酶(ATP7A)是一种关键的铜转运蛋白,在系统性铜吸收和铜在分泌途径中向铜酶的供应中起作用。 ATP7A的突变可导致通常致命的Menkes病。反式高尔基体网络与质膜之间的铜响应性转运调节了ATP7A的功能。我们以前曾报道过ATP7A的基础和铜响应激酶磷酸化,但尚未鉴定出特定的磷酸化位点。由于铜刺激ATP7A的运输和磷酸化,因此我们旨在鉴定所有特定的磷酸位点,并确定运输和磷酸化是否相关。我们在人类ATP7A中鉴定了20个体内磷酸化位点,在仓鼠中鉴定了8个体内磷酸化位点,所有这些位点都聚集在N-和C-末端胞质域内。八个位点是铜敏感的,因此是调节铜敏感的运输或催化活性的候选者。铜响应磷酸化位点丝氨酸1469的诱变导致极化(Madin Darby犬肾)和非极化(中国仓鼠卵巢)细胞中添加铜的情况下ATP7A的定位错误,强烈暗示特定丝氨酸残基的磷酸化是铜敏感的ATP7A转运至质膜所必需的。当突变为丙氨酸时,组成型磷酸化位点丝氨酸1432在极化的Madin Darby肾细胞中存在添加的铜时也会导致定位错误。这些研究表明,ATP7A中特定丝氨酸残基的磷酸化调节其亚细胞定位并因此起作用,并且将有助于识别参与调节该关键铜转运蛋白的激酶和信号传导途径。

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