Maher Megan, Cross Maddalena, Wilce Matthew C J, Guss J Mitchell, Wedd Anthony G
School of Molecular and Microbial Biosciences, University of Sydney, New South Wales 2006, Australia.
Acta Crystallogr D Biol Crystallogr. 2004 Feb;60(Pt 2):298-303. doi: 10.1107/S090744490302794X. Epub 2004 Jan 23.
Five different metal-substituted forms of Clostridium pasteurianum rubredoxin have been prepared and crystallized. The single Fe atom present in the Fe(S-Cys)(4) site of the native form of the protein was exchanged in turn for Co, Ni, Ga, Cd and Hg. All five forms of rubredoxin crystallized in space group R3 and were isomorphous with the native protein. The Co-, Ni- and Ga-substituted proteins exhibited metal sites with geometries similar to that of the Fe form (effective D(2d) local symmetry), as did the Cd and Hg proteins, but with a significant expansion of the metal-sulfur bond lengths. A knowledge of these structures contributes to a molecular understanding of the function of this simple iron-sulfur electron-transport protein.
已制备并结晶出五种不同金属取代形式的巴氏梭菌红素氧化还原蛋白。该蛋白质天然形式的Fe(S-Cys)(4)位点中的单个Fe原子依次被Co、Ni、Ga、Cd和Hg取代。所有五种形式的红素氧化还原蛋白均在空间群R3中结晶,并且与天然蛋白质同晶型。Co、Ni和Ga取代的蛋白质表现出与Fe形式类似几何形状的金属位点(有效的D(2d)局部对称性),Cd和Hg取代的蛋白质也是如此,但金属-硫键长度有显著增加。对这些结构的了解有助于从分子层面理解这种简单的铁硫电子传递蛋白的功能。