首页> 美国卫生研究院文献>The Journal of Biological Chemistry >High Yield Heterologous Expression of Wild-type and Mutant Cu+-ATPase (ATP7B Wilson Disease Protein) for Functional Characterization of Catalytic Activity and Serine Residues Undergoing Copper-dependent Phosphorylation
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High Yield Heterologous Expression of Wild-type and Mutant Cu+-ATPase (ATP7B Wilson Disease Protein) for Functional Characterization of Catalytic Activity and Serine Residues Undergoing Copper-dependent Phosphorylation

机译:高产异源表达的野生型和突变Cu + -ATPase(ATP7B威尔逊病蛋白)的催化活性和丝氨酸残基进行铜依赖性磷酸化的功能表征。

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摘要

ATP7B is a P-type ATPase required for copper homeostasis and related to Wilson disease of humans. In addition to various domains corresponding to other P-type ATPases, ATP7B includes an N terminus extension (NMBD) with six copper binding sites. We obtained high yield expression of WT and mutant ATP7B in COS1 cells infected with adenovirus vector. ATP7B, isolated with the microsomal fraction of cell homogenates, accounts for 10–20% of the total protein. Copper-dependent, steady-state ATPase yields 30 nmol of Pi/mg of protein/min at 37 °C, pH 6.0. ATP7B phosphorylation with ATP occurs with diphasic kinetics and is totally copper-dependent. Alkali labile phosphoenzyme (catalytic intermediate of P-ATPases) accounts for a small fraction of the total phosphoprotein and is prevented by D1027N (P domain) or C983A/C985A (CXC copper binding motif in TM6) mutations. Decay of [32P]phosphoenzyme following chase with non-radioactive ATP occurs with an initial burst involving alkali labile phosphoenzyme (absent in D1027N and C983A/C985A mutants) and continues at a slow rate involving alkali-resistant phosphoenzyme. If a copper chelator is added with the ATP chase, the initial burst is smaller, and further cleavage is totally inhibited. Analysis by proteolysis and mass spectrometry demonstrates that the alkali stable phosphoenzyme involves Ser478 and Ser481 (NMBD), Ser1121 (“N” domain) and Ser1453 (C terminus), and occurs with the same pattern ex vivo (COS-1) and in vitro (microsomes). The overall copper dependence of phosphorylation and hydrolytic cleavage suggests long range conformational effects, including interactions of NMBD and headpiece domains, with strong influence on catalytic turnover.
机译:ATP7B是铜稳态所需的P型ATPase,与人类Wilson病有关。除了对应于其他P型ATP酶的各种结构域外,ATP7B还包括具有六个铜结合位点的N末端延伸(NMBD)。我们在腺病毒载体感染的COS1细胞中获得了WT和突变型ATP7B的高产量表达。 ATP7B与细胞匀浆的微粒体部分分离,占总蛋白的10–20%。铜依赖性稳态ATPase在37°C,pH 6.0下产生30 nmol的Pi / mg的蛋白质/分钟。 ATP7B的ATP磷酸化具有两相动力学,并且完全依赖铜。碱不稳定的磷酸酶(P-ATPase的催化中间体)占总磷蛋白的一小部分,并被D1027N(P结构域)或C983A / C985A(TM6中的CXC铜结合基序)突变阻止。追逐非放射性ATP后[ 32 P]磷酸酶的衰变发生于涉及碱不稳定的磷酸酶(D1027N和C983A / C985A突变体中不存在)的初始爆发中,并以涉及耐碱的缓慢速率持续磷酸酶。如果在ATP追踪中添加铜螯合剂,则初始猝发较小,并且进一步裂解完全被抑制。通过蛋白水解和质谱分析表明,碱性稳定的磷酸酶涉及Ser 478 和Ser 481 (NMBD),Ser 1121 (“ N”结构域)和Ser 1453 (C端),并且在体外(COS-1)和体外(微粒体)的模式相同。磷酸化和水解裂解对铜的整体依赖性表明,其构象效应范围很广,包括NMBD和头域之间的相互作用,对催化转换有很大影响。

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