Weisberg E P, O'Donnell J M
J Biol Chem. 1986 Jan 25;261(3):1453-8.
The enzyme GTP cyclohydrolase I, which catalyzes the first step in the pteridine biosynthetic pathway, has been purified by at least 4400-fold from Drosophila melanogaster. The active complex has an apparent molecular mass of 575,000 daltons, as estimated from gel filtration. This high molecular mass complex appears to be composed of a number of 39,000-dalton subunits. A polyspecific antiserum generated against the active complex has been used to identify this polypeptide as being severely affected by mutations in Punch, the structural gene for GTP cyclohydrolase. Enzyme activity is inhibited by divalent cations and high ionic strength buffers. No cofactors have been demonstrated to be required for enzyme activity. The enzyme displays positive cooperativity in phosphate buffer, a Hill number of 2.1, but only slight cooperativity in Tris buffer, a Hill number of 1.2.
催化蝶啶生物合成途径第一步反应的GTP环化水解酶I已从黑腹果蝇中纯化出来,纯化倍数至少为4400倍。根据凝胶过滤法估算,活性复合物的表观分子量为575,000道尔顿。这种高分子量复合物似乎由多个39,000道尔顿的亚基组成。针对活性复合物产生的多特异性抗血清已被用于鉴定该多肽受到GTP环化水解酶结构基因Punch突变的严重影响。酶活性受到二价阳离子和高离子强度缓冲液的抑制。尚未证明酶活性需要辅因子。该酶在磷酸盐缓冲液中表现出正协同性,希尔系数为2.1,但在Tris缓冲液中仅表现出轻微协同性,希尔系数为1.2。