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[从脱辅酶和磷酸吡哆醛及其类似物重建肌肉糖原磷酸化酶b。脱辅基磷酸化酶和重建酶与特定配体的相互作用]

[Reconstruction of muscle glycogen phosphorylase b from an apoenzyme and pyridoxal-5'-phosphate and its analogs. Interaction of apophosphorylase and the reconstructed enzyme with specific ligands].

作者信息

Chebotareva N A, Sugrobova N P, Bulanova L N, Poznanskaia A A, Kurganov B I, Gunar V I

出版信息

Biokhimiia. 1995 Dec;60(12):2030-9.

PMID:8600997
Abstract

Sedimentation methods were used to study the effects of modification of the pyridoxal-5'-phosphate (PLP) molecule at the 5th position on the affinity of reconstituted muscle glycogen phosphorylase b for the substrate (glycogen) and the allosteric inhibitor (FMN) as well as on the enzyme capacity to association induced by AMP. Reconstituted phosphorylase b was obtained with PLP analogs containing at the 5th position -CH2-CH2-COOH (analog I), trans-CH=CH-COOH (analog II) or -C identical to COOH (analog III) residues. Reconstitution of phosphorylase b is accompanied by the recovery of the enzyme quaternary structure. Phosphorylase b reconstituted with PLP or analogs I, II and III is not distinguished practically from the native enzyme in its affinity for glycogen. Substitution of the native coenzyme in the phosphorylase molecule with any tested PLP analog leads to lower enzyme affinity for FMN. Microscopic dissociation constants of the FMN-enzyme complexes increase in the following order: enzyme.I < enzyme.II < enzyme.III. Phosphorylase b reconstituted with analogs I, II and III differs substantially from the native enzyme in its capacity to association in the presence of 1 mM AMP: the reconstituted enzyme is represented practically by only the tetrameric form.

摘要

采用沉降方法研究了5'-磷酸吡哆醛(PLP)分子5位修饰对重组肌肉糖原磷酸化酶b与底物(糖原)和变构抑制剂(FMN)亲和力的影响,以及对AMP诱导的酶缔合能力的影响。用在5位含有-CH2-CH2-COOH(类似物I)、反式-CH=CH-COOH(类似物II)或-C≡COOH(类似物III)残基的PLP类似物获得重组磷酸化酶b。磷酸化酶b的重组伴随着酶四级结构的恢复。用PLP或类似物I、II和III重组的磷酸化酶b对糖原的亲和力与天然酶几乎没有区别。用任何测试的PLP类似物取代磷酸化酶分子中的天然辅酶会导致酶对FMN的亲和力降低。FMN-酶复合物的微观解离常数按以下顺序增加:酶.I < 酶.II < 酶.III。用类似物I、II和III重组的磷酸化酶b在1 mM AMP存在下的缔合能力与天然酶有很大不同:重组酶实际上仅以四聚体形式存在。

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