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Steric restrictions on the binding of large metal ions to serum transferrin

机译:对大金属离子与血清转铁蛋白结合的立体限制

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Apotransferrin in 0.1 M N-(2-hydroxyethyl)piperazine-N'-2-ethanesulfonic acid at 25 deg C and pH 7.4 was titrated with acidic solutions of Lu~(3+), Tb~(3+), and Eu~(3+). Metal binding at the two specific metal-binding sites of transferrin was followed from changes in the difference UV spectra at 245 nm. The binding of Tb~(3+) was also followed from changes in the fluorescence emission spectrum at 549 nm. Apotransferrin was titrated with solutions containing varying ratios of the metal ion and the competitive chelating agent nitrilotriacetic acid, and metaltransferrin binding constants were calculated by nonlinear least-squares fits of the absorbance as a function of titrant added. The sequential carbonate-independent equilibrium constants for the binding of two metal ions are log K_(M1) = 11.08 and log K_(M2) = 7.93 for Lu~(3+), log K_(M1) = 11.20 and log K_(M2) = 7.61 for Tb~(3+), and log K_(M1) = 9.66 and log K_(M2) = 7.27 for Eu~(3+). Titrations of both C-terminal and N-terminal monoferric transferrins indicate that all of these metal ions bind more strongly to the C-terminal binding site. The trend in log K versus as a function of the lanthanide ionic radius has been evaluated both by plots of log K versus the metal ion charge/radius ratio and by linear free-energy relationships in which binding constants for complexes of the larger lanthanides are plotted versus the binding constants for complexes with the smallest lanthanide, Lu~(3+). Both methods indicate that there is a sharp drop in the binding constants for the C-terminal binding site for metals larger than Tb~(3+). This decrease is attributed to a steric hindrance to the binding of the larger cations. The steric effect is not as strong for metal binding at the N-terminal site. As a result, the selectivity for binding to the C-terminal site, which is quite high for the smaller lanthanides, drops sharply on going from Tb~(3+) to Nd~(3+).
机译:用Lu〜(3 +),Tb〜(3+)和Eu〜的酸性溶液滴定0.1M N-(2-羟乙基)哌嗪-N'-2-乙磺酸在25°C和pH 7.4下的载铁蛋白(3+)。从转染蛋白在245 nm处的紫外光谱差异中的变化追踪金属在转铁蛋白两个特定金属结合位点的结合。 Tb〜(3+)的结合也从549 nm处荧光发射光谱的变化来跟踪。用含有不同比例的金属离子和竞争性螯合剂次氮基三乙酸的溶液滴定载铁蛋白,并通过吸光度的非线性最小二乘拟合计算滴定金属铁蛋白的结合常数。两个金属离子结合的连续碳酸盐无关平衡常数为Lu〜(3+)的log K_(M1)= 11.08和log K_(M2)= 7.93,log K_(M1)= 11.20和log K_(M2对于Tb〜(3+))= 7.61,对数K_(M1)= 9.66,对Eu〜(3+)的log K_(M2)= 7.27。 C端和N端单铁转铁蛋白的滴定表明所有这些金属离子与C端结合位点的结合更牢固。 log K随镧系元素离子半径变化的趋势已通过log K相对于金属离子电荷/半径比的图以及线性自由能关系进行了评估,其中绘制了较大镧系元素络合物的结合常数相对于具有最小镧系元素Lu〜(3+)的复合物的结合常数。两种方法均表明,对于大于Tb〜(3+)的金属,其C端结合位点的结合常数急剧下降。这种减少归因于对较大阳离子结合的空间位阻。对于N端位点的金属结合,位阻效应并不那么强。结果,从较小的镧系元素到C-末端位点的结合选择性很高,从Tb〜(3+)到Nd〜(3+)急剧下降。

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