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Structural and functional studies of monomeric mutant of Cu-Zn superoxide dismutase without Arg 143

机译:不含Arg 143的Cu-Zn超氧化物歧化酶单体突变体的结构和功能研究

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Mutation of arginine (Arg) 143 with Ile in the monomeric mutant (Phe50Glu, Gly51Glu, Val148Lys, Ile151Lys) of copper-zinc superoxide dismutase (R143I M4SOD, where M4SOD is the above mutant) leads to a protein with low copper content. Cobalt(II) binds the demetalized protein with a low and comparable affinity for the two metal sites, whereas it binds first and stochiometrically at the zinc site in the M4SOD protein and in the dimeric wild type SOD. However, a CuCo SOD derivative can be obtained whose NMR spectra indicate the structural changes induced by monomerization plus those induced by the Arg --> Ile mutation. The electronic, circular dichroism, and EPR spectra provide structural information on the copper site. The low activity of the enzyme is accounted for on the basis of the structural properties of the active cavity. (C) 1999 John Wiley & Sons, Inc. [References: 37]
机译:铜锌超氧化物歧化酶(R143I M4SOD,其中M4SOD为上述突变体)的单体突变体(Phe50Glu,Gly51Glu,Val148Lys,Ile151Lys)中带有Ile的精氨酸(Arg)143突变导致蛋白质的铜含量低。钴(II)以较低且相当的亲和力与两个金属位点结合脱金属蛋白,而钴首先与M4SOD蛋白和二聚体野生型SOD中的锌位点化学计量结合。但是,可以获得CuCo SOD衍生物,其NMR光谱表明单体化引起的结构变化以及Arg-> Ile突变引起的结构变化。电子,圆二色性和EPR光谱提供了铜部位的结构信息。酶的低活性是根据活性腔的结构特性来解释的。 (C)1999 John Wiley&Sons,Inc. [参考:37]

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