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Quantifying the Interaction between Copper-Zinc Superoxide Dismutase (Sod1) and its Copper Chaperone (Ccs1)

机译:量化铜锌超氧化物歧化酶(Sod1)和其铜伴侣(Ccs1)之间的相互作用

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摘要

Immature copper-zinc superoxide dismutase (Sod1) is activated by its copper chaperone (Ccs1). Ccs1 delivers a single copper ion and catalyzes oxidation of an intra-subunit disulfide bond within each Sod1 monomer through a mechanistically ambiguous process. Here, we use residue specific fluorescent labeling of immature Sod1 to quantitate the thermodynamics of the Sod1•Ccs1 interaction while determining a more complete view of Ccs1 function. Ccs1 preferentially binds a completely immature form of Sod1 that is metal deficient and disulfide reduced (E, E-Sod1SH). However, binding induces structural changes that promote high-affinity zinc binding by the Ccs1-bound Sod1 molecule. This adds further support to the notion that Ccs1 likely plays dual chaperoning roles during the Sod1 maturation process. Further analysis reveals that in addition to the copper-dependent roles during Sod1 activation, the N- and C-terminal domains of Ccs1 also have synergistic roles in securing both Sod1 recognition and its own active conformation. These results provide new and measurable analyses of the molecular determinants guiding Ccs1-mediated Sod1 activation.
机译:未成熟的铜锌超氧化物歧化酶(Sod1)被其铜分子伴侣(Ccs1)激活。 Ccs1通过机械模棱两可的过程传递单个铜离子,并催化每个Sod1单体内的亚基内二硫键的氧化。在这里,我们使用残基特异性的未成熟Sod1荧光标记来定量Sod1•Ccs1相互作用的热力学,同时确定更完整的Ccs1功能视图。 Ccs1优先结合金属缺乏和二硫键还原的完全不成熟的Sod1形式(E,E-Sod1 SH )。但是,结合会诱导结构变化,从而促进Ccs1结合的Sod1分子与锌的高亲和力结合。这进一步支持了Ccs1在Sod1成熟过程中可能扮演双重陪伴角色的观点。进一步的分析表明,除了在Sod1激活过程中依赖铜的作用外,Ccs1的N和C末端结构域在确保Sod1识别及其自身构象方面也具有协同作用。这些结果为指导Ccs1介导的Sod1活化的分子决定因素提供了新的和可测量的分析。

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