Shimomura S, Emman K, Fukui T
J Biochem. 1980 Apr;87(4):1043-52.
The removal of pyridoxal 5'-phosphate from potato phosphorylase [EC 2.4.1.1] was achieved by incubation in an acidic ammonium sulfate solution containing hydroxylamine. Potato apophosphorylase is catalytically inactive, but reactivated by incubation with pyridoxal phosphate. Upon titration, the degree of recovery of activity agreed well with the degree of incorporation of pyridoxal phosphate. Therefore, it can be concluded that pyridoxal phosphate in the plant enzyme is the cofactor required for the enzyme activity, as it has been shown to be in the animal enzyme. The reconstitution of the apoenzyme using six pyridoxal phosphate analogues modified at the 5' position indicates that the structural properties of the cofactor binding site is similar in potato and rabbit muscle phosphorylases. This suggests that the plant enzyme has also a substrate binding site neighboring with the 5'-phosphate moiety of the bound cofactor similar to that shown to exist in the animal enzyme. On the other hand, the analysis of the far-ultraviolet circular dichroism spectra of these two enzymes shows that the secondary structures are rather different from each other; the potato enzyme is estimated to have 16% alpha-helix and 37% beta-structure, and the muscle enzyme b 41% alpha-helix and 21% beta-structure. This indicates that the cofactor binding locus must have been more strictly conserved than other regions.
通过在含有羟胺的酸性硫酸铵溶液中孵育,从马铃薯磷酸化酶[EC 2.4.1.1]中去除了磷酸吡哆醛5'-磷酸。马铃薯脱辅基磷酸化酶没有催化活性,但通过与磷酸吡哆醛孵育可重新激活。滴定后,活性恢复程度与磷酸吡哆醛的掺入程度非常吻合。因此,可以得出结论,植物酶中的磷酸吡哆醛是酶活性所需的辅因子,正如在动物酶中所显示的那样。使用在5'位修饰的六种磷酸吡哆醛类似物对脱辅基酶进行重组表明,马铃薯和兔肌肉磷酸化酶中辅因子结合位点的结构性质相似性。这表明植物酶也有一个与结合辅因子的5'-磷酸部分相邻的底物结合位点,类似于在动物酶中所显示的那样。另一方面,对这两种酶的远紫外圆二色光谱分析表明,它们的二级结构彼此相当不同;马铃薯酶估计有16%的α-螺旋和37%的β-结构,而肌肉酶有41%的α-螺旋和21%的β-结构。这表明辅因子结合位点一定比其他区域更严格地保守。