Markland F S, Bacharach A D, Weber B H, O'Grady T C, Saunders G C, Umemura N
J Biol Chem. 1975 Feb 25;250(4):1301-10.
Sulfhydryl reagents, as well as mild hydrogen peroxide oxidation, do not inhibit the activity of yeast phosphoglycerate kinase, indicating that the single thiol group and 3 methionine residues present in the enzyme are not essential for activity. Nitration of phosphoglycerate kinase by tetranitromethane inhibits the enzyme by reaction with a single tyrosine residue. Substrates provide partial protection against inactivation by nitration. Circular dichroism spectra indicate that no conformational changes occur upon nitration. However, perturbation of the microenvironment surrounding the aromatic amino acid residues, particularly tyrosine, was observed. The same perturbation was observed on addition of the substrate 3-phosphoglycerate kinase to native phosphoglycerate kinase. The role of lysine in the action of yeast phosphoglycerate kinase has been studied by modification with O-methylisourea, 2-methoxy-5-nitrotropone, and pyridoxal phosphate. Guanidination shows that there are lysines essential for phosphoglycerate kinase; extrapolation to zero activity indicates that there are three essential lysines as judged by nitrotroponylation and three essential lysines when the enzyme is reacted with pyridoxal phosphate. Substrates afford partial protection and extrapolation to total protection indicates that up to three lysines are protected by MgITP and one lysine by 3-phosphoglycerate. Spectrofluorescence and optical rotatory dispersion measurements show that there is no detectable conformational change for the guanidinated phosphoglycerate kinase and that there are slight changes in the spectra suggesting that there may be slight conformational changes for the nitrotroponylated and the pyridoxal phosphate-modified enzymes.
巯基试剂以及温和的过氧化氢氧化均不会抑制酵母磷酸甘油酸激酶的活性,这表明该酶中存在的单个巯基和3个甲硫氨酸残基对于活性并非必不可少。四硝基甲烷对磷酸甘油酸激酶的硝化作用通过与单个酪氨酸残基反应来抑制该酶。底物可提供部分保护,防止因硝化作用而失活。圆二色光谱表明硝化作用不会引起构象变化。然而,观察到芳香族氨基酸残基周围,尤其是酪氨酸周围的微环境受到了扰动。向天然磷酸甘油酸激酶中添加底物3-磷酸甘油酸时也观察到了同样的扰动。通过用O-甲基异脲、2-甲氧基-5-硝基氧酮和磷酸吡哆醛进行修饰,研究了赖氨酸在酵母磷酸甘油酸激酶作用中的作用。胍基化表明存在对磷酸甘油酸激酶必不可少的赖氨酸;外推至零活性表明,通过硝基氧酮化判断有3个必需赖氨酸,而当该酶与磷酸吡哆醛反应时也有3个必需赖氨酸。底物提供部分保护,外推至完全保护表明,MgITP可保护多达3个赖氨酸,3-磷酸甘油酸可保护1个赖氨酸。光谱荧光和旋光色散测量表明,胍基化的磷酸甘油酸激酶没有可检测到的构象变化,而光谱有轻微变化,这表明硝基氧酮化和磷酸吡哆醛修饰的酶可能有轻微的构象变化。