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磷酸吡哆醛磷酸化酶b中的激活剂阴离子结合位点:晶体中磷酸、磷酸盐和氟磷酸盐的结合

Activator anion binding site in pyridoxal phosphorylase b: the binding of phosphite, phosphate, and fluorophosphate in the crystal.

作者信息

Oikonomakos N G, Zographos S E, Tsitsanou K E, Johnson L N, Acharya K R

机构信息

Institute of Biological Research and Biotechnology, National Hellenic Research Foundation, Athens, Greece.

出版信息

Protein Sci. 1996 Dec;5(12):2416-28. doi: 10.1002/pro.5560051204.

Abstract

It has been established that phosphate analogues can activate glycogen phosphorylase reconstituted with pyridoxal in place of the natural cofactor pyridoxal 5'-phosphate (Change YC. McCalmont T, Graves DJ. 1983. Biochemistry 22:4987-4993). Pyridoxal phosphorylase b has been studied by kinetic, ultracentrifugation, and X-ray crystallographic experiments. In solution, the catalytically active species of pyridoxal phosphorylase b adopts a conformation that is more R-state-like than that of native phosphorylase b, but an inactive dimeric species of the enzyme can be stabilized by activator phosphite in combination with the T-state inhibitor glucose. Co-crystals of pyridoxal phosphorylase b complexed with either phosphite, phosphate, or fluorophosphate, the inhibitor glucose, and the weak activator IMP were grown in space group P4(3)2(1)2, with native-like unit cell dimensions, and the structures of the complexes have been refined to give crystallographic R factors of 18.5-19.2%, for data between 8 and 2.4 A resolution. The anions bind tightly at the catalytic site in a similar but not identical position to that occupied by the cofactor 5'-phosphate group in the native enzyme (phosphorus to phosphorus atoms distance = 1.2 A). The structural results show that the structures of the pyridoxal phosphorylase b-anion-glucose-IMP complexes are overall similar to the glucose complex of native T-state phosphorylase b. Structural comparisons suggest that the bound anions, in the position observed in the crystal, might have a structural role for effective catalysis.

摘要

已经确定,磷酸类似物可以激活用吡哆醛替代天然辅因子磷酸吡哆醛重构的糖原磷酸化酶(Change YC、McCalmont T、Graves DJ。1983年。《生物化学》22:4987 - 4993)。通过动力学、超速离心和X射线晶体学实验对磷酸吡哆醛b进行了研究。在溶液中,磷酸吡哆醛b的催化活性物种采用的构象比天然磷酸化酶b更类似R态,但该酶的无活性二聚体物种可以通过亚磷酸激活剂与T态抑制剂葡萄糖结合来稳定。与亚磷酸、磷酸或氟磷酸、抑制剂葡萄糖以及弱激活剂肌苷一磷酸(IMP)复合的磷酸吡哆醛b的共晶体在空间群P4(3)2(1)2中生长,具有类似天然的晶胞尺寸,并且复合物的结构已被精修,对于8至2.4 Å分辨率的数据,晶体学R因子为18.5 - 19.2%。阴离子在催化位点紧密结合,其位置与天然酶中辅因子5'-磷酸基团占据的位置相似但不完全相同(磷原子到磷原子的距离 = 1.2 Å)。结构结果表明,磷酸吡哆醛b - 阴离子 - 葡萄糖 - IMP复合物的结构总体上与天然T态磷酸化酶b的葡萄糖复合物相似。结构比较表明,在晶体中观察到的位置上结合的阴离子可能对有效催化具有结构作用。

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THE ROLE OF ADENYLIC ACID IN THE ACTIVATION OF PHOSPHORYLASE.腺苷酸在磷酸化酶激活中的作用。
Proc Natl Acad Sci U S A. 1964 Jan;51(1):131-8. doi: 10.1073/pnas.51.1.131.

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