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Mapping the Functional Interaction of Sco1 and Cox2 in Cytochrome Oxidase Biogenesis

机译:映射Sco1和Cox2在细胞色素氧化酶生物发生中的功能相互作用

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摘要

Sco1 is implicated in the copper metallation of the CuA site in Cox2 of cytochrome oxidase. The structure of Sco1 in the metallated and apo-conformers revealed structural dynamics primarily in an exposed region designated loop 8. The structural dynamics of loop 8 in Sco1 suggests it may be an interface for interactions with Cox17, the Cu(I) donor and/or Cox2. A series of conserved residues in the sequence motif 217KKYRVYF223 on the leading edge of this loop are shown presently to be important for yeast Sco1 function. Cells harboring Y219D, R220D, V221D, and Y222D mutant Sco1 proteins failed to restore respiratory growth or cytochrome oxidase activity in sco1Δ cells. The mutant proteins are stably expressed and are competent to bind Cu(I) and Cu(II) normally. Specific Cu(I) transfer from Cox17 to the mutant apo-Sco1 proteins proceeds normally. In contrast, using two in vivo assays that permit monitoring of the transient Sco1-Cox2 interaction, the mutant Sco1 molecules appear compromised in a function with Cox2. The mutants failed to suppress the respiratory defect of cox17-1 cells unlike wild-type SCO1. In addition, the mutants failed to suppress the hydrogen peroxide sensitivity of sco1Δ cells. These studies implicate different surfaces on Sco1 for interaction or function with Cox17 and Cox2.
机译:Sco1与细胞色素氧化酶Cox2中CuA位点的铜金属化有关。金属化和脱辅基构象异构体中Sco1的结构主要在指定为环8的裸露区域揭示了结构动力学。Sco1中环8的结构动力学表明,它可能是与Cox17,Cu(​​I)供体和/或相互作用的界面。或Cox2。目前显示,在该环的前沿,序列基序 217 KKYRVYF 223 中的一系列保守残基对酵母Sco1功能很重要。携带Y219D,R220D,V221D和Y222D突变Sco1蛋白的细胞无法恢复sco1Δ细胞的呼吸生长或细胞色素氧化酶活性。突变蛋白稳定表达并能正常结合Cu(I)和Cu(II)。从Cox17到突变apo-Sco1蛋白的特定Cu(I)转移正常进行。相比之下,使用两种体内检测方法可以监测瞬时Sco1-Cox2相互作用,突变的Sco1分子似乎在功能上与Cox2无关。与野生型SCO1不同,该突变体未能抑制cox17-1细胞的呼吸缺陷。另外,突变体不能抑制sco1Δ细胞的过氧化氢敏感性。这些研究暗示了Sco1上与Cox17和Cox2相互作用或起作用的不同表面。

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