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Conformational changes and in vitro core-formation modifications induced by site-directed mutagenesis of the specific N-terminus of pea seed ferritin

机译:通过定点诱变豌豆种子铁蛋白特定N端引起的构象变化和体外核心形成修饰

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pPlant ferritin has a three-dimensional structure predicted to be very similar to that of animal ferritin. It has, however, an additional specific sequence of 24 amino acids at its N-terminus named extension peptide (EP). In order to determine precisely the interactions between EP and other domains of the pea seed ferritin subunit, three point mutations were performed. The mutated residues were chosen by three-dimensional computer modelling of the pea seed ferritin subunit structure [Lobréaux, Yewdall, Briat and Harrison (1992) Biochem. J. 228, 931-939]. The mutant recombinant proteins were expressed in iEscherichia coli/i and purified to homogeneity; all the mutants were found to be assembled as 24-mers. When Ala-13 was replaced by His, as in mammalian ferritins, ferroxidase activity was significantly reduced. Moreover, iin vitro/i iron-core formation in Pro-X--&Ala, Lys-R--&Glu and Ala-13--&His mutants was increased after denaturation by urea followed by renaturation; this was also observed with the EP deletion mutant (r delta TP/EP). The recombinant ferritins were also analysed using tryptophan fluorescence spectra. The r delta TP/EP, Pro-X--&Ala and Lys-R--&Glu mutants were found to be more susceptible to denaturation by urea than the native r delta TP pea seed ferritin./p
机译:>植物铁蛋白的三维结构预计与动物铁蛋白非常相似。但是,它在其N端有一个额外的24个氨基酸的特定序列,称为延伸肽(EP)。为了精确确定EP和豌豆种子铁蛋白亚基其他域之间的相互作用,进行了三点突变。通过对豌豆种子铁蛋白亚基结构的三维计算机建模来选择突变的残基[Lobréaux,Yewdall,Briat和Harrison(1992)Biochem。 J. 228,931-939]。突变的重组蛋白在大肠杆菌中表达,并纯化至均一。发现所有突变体组装成24聚体。如在哺乳动物铁蛋白中那样,当用Ala-13替换为His时,铁氧化酶的活性会大大降低。此外,在尿素变性后,Pro-X-> Ala,Lys-R-> Glu和Ala-13-> His突变体中的体外铁核形成增加。通过复性; EP缺失突变体(rΔTP / EP)也观察到了这一点。还使用色氨酸荧光光谱分析了重组铁蛋白。发现rδTP / EP,Pro-X-> Ala和Lys-R-> Glu突变体比天然rδTP豌豆种子铁蛋白更容易被尿素变性。

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