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胰岛素的1H核磁共振研究:组氨酸残基、金属结合及在碱性溶液中的解离

1H NMR studies of insulin: histidine residues, metal binding, and dissociation in alkaline solution.

作者信息

Ramesh V, Bradbury J H

机构信息

Chemistry Department, Australian National University, Canberra.

出版信息

Arch Biochem Biophys. 1987 Oct;258(1):112-22. doi: 10.1016/0003-9861(87)90328-6.

DOI:10.1016/0003-9861(87)90328-6
PMID:3310894
Abstract

The shifts of the H2 histidine B5 and B10 resonances of 2-Zn insulin hexamer were followed in 2H2O by 1H NMR spectroscopy at 270 MHz from pH 9.85 to 7. The two resonances present at high pH, previously assigned to H2 histidine B5 and B10 residues, moved slightly downfield and split into four resonances at pH 8.95 and also at pH 7. By use of a paramagnetic broadening probe (Mn2+) and the addition of Zn2+ to metal-free insulin, it was deduced that the four resonances arose from histidines B10 and B5 in two different magnetic environments, probably either bound to Zn2+ or not bound to Zn2+. The pK' values of the B5 and B10 histidines were determined in 60% 2H2O-40% dioxan, in which insulin was soluble throughout the pH range, to be 7.1 and 6.8, respectively at 37 degrees C. Studies at higher pH indicated that at a concentration level suitable for 1H NMR (approximately 1 mM) at 37 degrees C in 2H2O the 2-Zn hexamer was largely dissociated to dimer at pH 10.3 and to monomer at pH 10.8. Addition of paramagnetic shift probe Ni2+ to metal-free insulin caused changes to the spectrum similar to those produced on addition of diamagnetic Zn2+. Addition of Co2+ gave a different result, but there was no paramagnetic shift of the H2 histidine B10 resonance, probably because of rapid exchange at the binding site. Addition of Cd2+ and of Cd2+ and Ca2+ produced changes that were similar to each other but were different from those observed on addition of Zn2+, probably due to the binding of Cd2+ and Ca2+ at glutamate B13.

摘要

在270 MHz下,于2H2O中采用1H NMR光谱法跟踪2-Zn胰岛素六聚体的H2组氨酸B5和B10共振峰从pH 9.85到pH 7的变化。在高pH下出现的两个共振峰,之前被指定为H2组氨酸B5和B10残基,略微向低场移动,并在pH 8.95和pH 7时分裂为四个共振峰。通过使用顺磁加宽探针(Mn2+)以及向无金属胰岛素中添加Zn2+,推断出这四个共振峰源自处于两种不同磁性环境中的组氨酸B10和B5,可能是与Zn2+结合或未与Zn2+结合。在60% 2H2O - 40%二氧六环中测定了B5和B10组氨酸的pK'值,在该体系中胰岛素在整个pH范围内均溶解,在37℃时分别为7.1和6.8。更高pH下的研究表明,在37℃的2H2O中,对于适合1H NMR的浓度水平(约1 mM),2-Zn六聚体在pH 10.3时大部分解离为二聚体,在pH 10.8时解离为单体。向无金属胰岛素中添加顺磁位移探针Ni2+会使光谱发生与添加抗磁性Zn2+时类似的变化。添加Co2+得到不同结果,但H2组氨酸B10共振峰没有顺磁位移,可能是因为结合位点处的快速交换。添加Cd2+以及Cd2+和Ca2+产生的变化彼此相似,但与添加Zn2+时观察到的不同,可能是由于Cd2+和Ca2+在谷氨酸B13处的结合。

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