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酵母磷酸甘油酸激酶中酪氨酰残基的分光光度法pH滴定及用四硝基甲烷进行的硝化反应

Spectrophotometric pH titrations and nitration with tetranitromethane of the tyrosyl residues in yeast phosphoglycerate kinase.

作者信息

Hjelmgren T, Arvidsson L, Larsson-Raźnikiewicz M

出版信息

Biochim Biophys Acta. 1976 Sep 14;445(2):342-9. doi: 10.1016/0005-2744(76)90088-7.

Abstract

Spectrophotometric pH titrations of phosphoglycerate kinase (EC 2.7.2.3) reveal seven tyrosyl residues. In the native state one tyrosyl residue has pKapp equal to 9.3, another has pKapp of about 12.9, and five have pKapp values close to 11.0. Titration above pH 10 causes concomitant reduction of the catalytic activity. Reactivation of the enzyme occurs during storage at pH 7.8. In 6 M guanidine - HCl seven tyrosyl residues with pKapp values equal to 10.0 appear. Nitration of three tyrosyl residues occurs easily when tetranitromethane is used in excess. Four tyrosyl residues appear to be masked or buried. The tyrosyl residue having pKapp equal to 9.3 can be selectively nitrated. Simultaneously the enzyme loses 40% of its catalytic activity. No change in the Km value for one or the other of the two substrates, MgATP or 3-phospho-D-glycerate, was observed in the mononitrated enzyme. On the other hand MgATP protects the tyrosyl residue from nitration whereas 3-phospho-D-glycerate at corresponding condition appears harmless. These results suggest the low ionizing tyrosyl residue to be situated close to the binding site of MgATP, possibly in a pocket just behind. Circular dichroism measurements indicated that minor successive changes occur in the secondary structure, mainly the beta-structure, when the enzyme is being nitrated. It is reasonable to think that these structural changes, possible in combination with steric hindrance, are responsible for the decrease in catalytic activity. Dimerization of the enzyme occurs if the single thiol group is not masked before the tetranitromethane treatment.

摘要

磷酸甘油酸激酶(EC 2.7.2.3)的分光光度法pH滴定显示有七个酪氨酸残基。在天然状态下,一个酪氨酸残基的表观pK值等于9.3,另一个约为12.9,五个的表观pK值接近11.0。在pH 10以上滴定会导致催化活性同时降低。在pH 7.8储存期间酶会重新激活。在6 M盐酸胍中出现七个表观pK值等于10.0的酪氨酸残基。当过量使用四硝基甲烷时,三个酪氨酸残基很容易被硝化。四个酪氨酸残基似乎被掩盖或埋藏。表观pK值等于9.3的酪氨酸残基可以被选择性硝化。同时,酶失去40%的催化活性。在单硝化的酶中,未观察到两种底物(MgATP或3-磷酸-D-甘油酸)中任何一种的Km值发生变化。另一方面,MgATP可保护酪氨酸残基不被硝化,而在相应条件下3-磷酸-D-甘油酸似乎无害。这些结果表明低电离的酪氨酸残基位于MgATP的结合位点附近,可能就在后面的一个口袋中。圆二色性测量表明,在酶被硝化时,二级结构(主要是β结构)会发生微小的连续变化。有理由认为这些结构变化,可能与空间位阻相结合,是催化活性降低的原因。如果在四硝基甲烷处理之前不掩盖单个巯基,酶会发生二聚化。

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