首页> 美国卫生研究院文献>Biochemical Journal >Metal-ion-promoted binding of triazine dyes to proteins. The interaction of Cibacron Blue F3G-A with yeast hexokinase.
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Metal-ion-promoted binding of triazine dyes to proteins. The interaction of Cibacron Blue F3G-A with yeast hexokinase.

机译:金属离子促进三嗪染料与蛋白质的结合。 Cibacron Blue F3G-A与酵母己糖激酶的相互作用。

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摘要

Bivalent metal ions, particularly Zn2+ and other members of the first-row transition series, promote irreversible inactivation of yeast hexokinase by Cibacron Blue F3G-A at a site competitive with both ATP and D-glucose. Difference spectroscopy indicates that the protein-dye dissociation constant is decreased from 250 micrometers in the absence of metal ions to less than 100 micrometers in the presence of appropriate concentrations of metal ions, with specificity displayed in the sequence of Zn2+ greater than Cu2+ greater than Ni2+ greater than Mn2+. Quantitative inactivation of yeast hexokinase leads to the incorporation of approx. 1 mol of Cibacron Blue F3G-A/mol of subunit of mol. wt. 51 000 in both the presence and the absence of metal ion. These results suggest the formation of a highly specific ternary complex involving enzyme, dye and metal ion at the active-site region of the enzyme, and correlate well with the known effects of metal ions in promoting the binding of hexokinase to immobilized Cibacron Blue F3G-A.
机译:二价金属离子,特别是Zn2 +和第一行过渡系列的其他成员,在与ATP和D-葡萄糖都具有竞争性的位点处促进了Cibacron Blue F3G-A对酵母己糖激酶的不可逆失活。差示光谱法表明,在适当浓度的金属离子存在下,蛋白质-染料的解离常数从不存在金属离子时的250微米降低至不足100微米,并且以Zn2 +大于Cu2 +大于Ni2 +的顺序显示出特异性大于Mn2 +。酵母己糖激酶的定量失活导致约200mg / ml掺入。 1 mol烟碱蓝F3G-A / mol的亚基。重量在有金属离子和无金属离子的情况下都为51 000。这些结果表明,在酶的活性位点区域形成了一种高度特异性的涉及酶,染料和金属离子的三元复合物,并且与金属离子在促进己糖激酶与固定化Cibacron Blue F3G-的结合方面的已知作用密切相关。一个。

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