Yoneyama T, Brewer J M, Hatakeyama K
Department of Surgery, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, USA.
J Biol Chem. 1997 Apr 11;272(15):9690-6. doi: 10.1074/jbc.272.15.9690.
GTP cyclohydrolase I feedback regulatory protein (GFRP) mediates feedback inhibition of GTP cyclohydrolase I activity by tetrahydrobiopterin and also mediates the stimulatory effect of phenylalanine on the enzyme activity. To characterize the molecular structure of GFRP, we have purified it from rat liver using an efficient step of affinity chromatography and isolated cDNA clones, based on partial amino acid sequences of peptides derived from purified GFRP. Comparison between the amino acid sequence deduced from the cDNA and the N-terminal amino acid sequence of purified GFRP showed that the mature form of GFRP consists of 83 amino acid residues with a calculated Mr of 9,542. The isolated GFRP cDNA was expressed in Escherichia coli as a fusion protein with six consecutive histidine residues at its N terminus. The fusion protein was affinity-purified and digested with thrombin to remove the histidine tag. The resulting recombinant GFRP showed kinetic properties similar to those of GFRP purified from rat liver. Cross-linking experiments using dimethyl suberimidate indicated that GFRP was a pentamer of 52 kDa. Sedimentation equilibrium measurements confirmed the pentameric structure of GFRP by giving an average Mr of 49,734, which is 5 times the calculated molecular weight of the recombinant GFRP polypeptide. Based on the pentameric structure of GFRP, we have proposed a model for the quaternary structure of GFRP and GTP cyclohydrolase I complexes.
GTP环化水解酶I反馈调节蛋白(GFRP)介导四氢生物蝶呤对GTP环化水解酶I活性的反馈抑制作用,同时也介导苯丙氨酸对该酶活性的刺激作用。为了表征GFRP的分子结构,我们利用亲和层析的有效步骤从大鼠肝脏中纯化了该蛋白,并基于从纯化的GFRP衍生的肽段的部分氨基酸序列分离出了cDNA克隆。从cDNA推导的氨基酸序列与纯化的GFRP的N端氨基酸序列的比较表明,GFRP的成熟形式由83个氨基酸残基组成,计算得出的分子量为9542。分离出的GFRP cDNA在大肠杆菌中作为一种在其N端带有六个连续组氨酸残基的融合蛋白表达。融合蛋白经亲和纯化后用凝血酶消化以去除组氨酸标签。所得的重组GFRP表现出与从大鼠肝脏纯化的GFRP相似的动力学性质。使用辛二酸二甲酯进行的交联实验表明,GFRP是一种52 kDa的五聚体。沉降平衡测量通过给出平均分子量49734证实了GFRP的五聚体结构,这是重组GFRP多肽计算分子量的5倍。基于GFRP的五聚体结构,我们提出了GFRP与GTP环化水解酶I复合物四级结构的模型。