Taucher M, Kopperschläger G, Hofmann E
Eur J Biochem. 1975 Nov 15;59(2):319-25. doi: 10.1111/j.1432-1033.1975.tb02458.x.
Yeast phosphofructokinase having a molecular weight of 750000--800000 (20 S) has been subjected to limited proteolysis by subtilisin and yeast proteases. Two steps of proteolytic degradation could be distinguished: in the first step, which is accompanied by an increase in molecular activity, the subunits alpha and beta (Mr 120000) are converted to alpha' and beta' (Mr approximately 900000), and in the second step, accompanied by a decrease in enzyme activity, alpha' is converted to alpha'' (Mr 80000) and two further fragments having Mr 45000 and 35000 become detectable. In the course of the conversion the sedimentation value of the undissociated enzyme drops from 20 S to about 17 S. The two substrates fructose 6-phosphate and ATP exhibit characteristic protective effects on enzyme activity and on subunit degradation. Whereas the first step is not strongly influenced by the substrates, fructose, 6-phosphate inhibits significantly the degradation of alpha' and beta', whereas ATP prevents only degradation of beta'. When in presence of ATP alpha' is degraded to alpha'', the quaternary structure of the 17-S enzyme is no longer stable and a dissociation of the molecule occurs to a 12-S form which is enzymically active and ATP-sensitive and in which the ratio of alpha'' to beta'' is one-to-one.
分子量为750000 - 800000(20S)的酵母磷酸果糖激酶已用枯草杆菌蛋白酶和酵母蛋白酶进行了有限的蛋白水解。可以区分出两步蛋白水解降解:第一步,伴随着分子活性的增加,α和β亚基(分子量120000)转变为α'和β'(分子量约90000),第二步,伴随着酶活性的降低,α'转变为α''(分子量80000),并且另外两个分子量为45000和35000的片段变得可检测到。在转变过程中,未解离酶的沉降值从20S降至约17S。两种底物6-磷酸果糖和ATP对酶活性和亚基降解表现出特征性的保护作用。虽然第一步受底物影响不大,但6-磷酸果糖显著抑制α'和β'的降解,而ATP仅阻止β'的降解。当在ATP存在下α'降解为α''时,17-S酶的四级结构不再稳定,分子解离为12-S形式,该形式具有酶活性且对ATP敏感,其中α''与β''的比例为一对一。