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Poly-His and poly-Gln sequences in bacterial proteins: tempting sites for metal ions to interact with

机译:细菌蛋白质中的聚乙烯和聚 - GLN序列:金属离子的诱惑部位与之相互作用

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Hpn and Hpn-like are Helicobacter pylori cytoplasmic proteins involved in the homeostasis of nickel; this metal is required for the enzymes urease and Ni-Fe hydrogenase, essential for the bacterium colonization in the human stomach. While almost half of Hpn sequence consists of polyhistydyl repeats, Hpn-like protein is rich in glutamine residues. In order to shed light on the role of the consecutive His and Gln residues in metal-ion binding, the present investigation is focused on the N-terminal domain of Hpn-like protein. Cu(II) and Ni(II) complexes of peptide models were studied by means of different thermodynamic and spectroscopic techniques, as well as through mo- lecular modeling computations.
机译:HPN和HPN的幽门螺杆菌细胞质蛋白质涉及镍的稳态;酶脲酶和Ni-Fe氢酶需要这种金属,对于人胃中的细菌定植至关重要。虽然几乎一半的HPN序列由多苯基重复组成,但HPN样蛋白质富含谷氨酰胺残留物。为了使光线在金属离子结合中连续他和GLN残基的作用上,本研究的重点是HPN样蛋白的N-末端结构域。通过不同的热力学和光谱技术研究肽模型的Cu(II)和Ni(II)络合物,以及通过Mo-untulator造型计算。

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