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通过在高温下生长对粗糙脉孢菌丙酮酸激酶调节特性的修饰。

Modification of the regulatory properties of pyruvate kinase of Neurospora by growth at elevated temperatures.

作者信息

Kapoor M, O'Brien M, Braun A

出版信息

Can J Biochem. 1976 May;54(5):398-407. doi: 10.1139/o76-058.

Abstract

Pyruvate kinase (EC 2.7.1.40) was isolated from Neurospora crassa mycelium grown at 28 degrees C (PK-28) and at 42 degrees C (PK-42). The regulatory properties, particularly the response towards the allosteric effector fructose 1,6-diphosphate (FDP), was different in the two enzymes. PK-28 showed an activation by FDP but PK-42, under comparable conditions, appeared to be activated by low concentrations of FDP and inhibited by higher ones. For PK-28, complex formation with FDP results in a lowering of the isoelectric point from 6.40 to 5.50, representing the pI of the unliganded enzyme and that of the complex, respectively. In contrast to this, PK-42 exhibits a weak binding to FDP as suggested by a lack of decrease in the isoelectric point on treatment with comparable concentrations of FDP. Studies with quenching of aromatic residue fluorescence of PK-28 and PK-42, following binding of FDP, indicate that although this ligand binds to both types of enzymes the affinity for the two is vastly different. Dissociation constants of 9.3 muM and 0.1 mM were calculated for the binding of FDP to PK-28 and PK-42, respectively. It is concluded that growth at elevated temperatures induced a conformational change in the pyruvate kinase leading to partial desensitization of the allosteric site. The nature of the factor(s) responsible for this change is not understood at present.

摘要

丙酮酸激酶(EC 2.7.1.40)是从在28摄氏度(PK - 28)和42摄氏度(PK - 42)下生长的粗糙脉孢菌菌丝体中分离得到的。这两种酶的调节特性,尤其是对变构效应物1,6 - 二磷酸果糖(FDP)的反应有所不同。PK - 28表现出被FDP激活,但在可比条件下,PK - 42似乎在低浓度FDP时被激活,而在高浓度时被抑制。对于PK - 28,与FDP形成复合物会导致等电点从6.40降至5.50,分别代表未结合配体的酶和复合物的等电点。与此相反,PK - 42与FDP的结合较弱,这可从用可比浓度的FDP处理后等电点没有降低得到暗示。对PK - 28和PK - 42在结合FDP后芳香族残基荧光猝灭的研究表明,尽管这种配体与两种类型的酶都结合,但对两者的亲和力差异极大。计算得出FDP与PK - 28和PK - 42结合的解离常数分别为9.3 μM和0.1 mM。得出的结论是,在高温下生长会诱导丙酮酸激酶发生构象变化,导致变构位点部分脱敏。目前尚不清楚导致这种变化的因素的性质。

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