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天冬氨酸氨基转移酶解离为亚基。配体对这种解离的影响。

Dissociation of aspartate aminotransferase into subunits. Effect of ligands upon this dissociation.

作者信息

Cournil I, Barba J M, Verge D, Arrio-Dupont M

出版信息

J Biol Chem. 1975 Nov 10;250(21):8564-8.

PMID:1194265
Abstract

Frontal and zonal analysis of the chromatography of aspartate aminotransferase (EC2.61.1), pig heart cytosolic enzyme, on Bio-Gel P150 shows that holo- and apoenzyme can dissociate at pH 8.3. Ultracentrifugation and fluorescence depolarization confirm this result. Kinetic analysis of the fluorescence depolarization experiments favors a biphasic phenomenon: a few minutes for the faster one and several hours for the slower one. The apparent dissociation constant is 0.8 muM for the apoenzyme and 0.18 muM for the pyridoxal 5'-phosphate form of the holoenzyme. In the presence of sucrose or 0.1 M L-aspartate or a mixture of 70 mM L-glutamate and 2 mM alpha-ketoglutarate, the holoenzyme is dimeric at concentrations higher than 5 nM. The addition of a mixture of the substrates L-glutamate and alpha-ketoglutarate to a monomeric holoenzyme leads to dimerization. The stability of the dimeric form is in the order: holoenzyme + substrates greater than apoenzyme.

摘要

对猪心脏胞质酶天冬氨酸转氨酶(EC2.61.1)在Bio - Gel P150上进行色谱的前沿和区域分析表明,全酶和脱辅基酶在pH 8.3时会解离。超速离心和荧光去极化证实了这一结果。荧光去极化实验的动力学分析支持双相现象:较快的一个过程持续几分钟,较慢的一个过程持续数小时。脱辅基酶的表观解离常数为0.8μM,全酶的磷酸吡哆醛形式的表观解离常数为0.18μM。在蔗糖、0.1 M L - 天冬氨酸或70 mM L - 谷氨酸与2 mMα - 酮戊二酸的混合物存在下,当浓度高于5 nM时,全酶为二聚体。向单体全酶中添加底物L - 谷氨酸和α - 酮戊二酸的混合物会导致二聚化。二聚体形式的稳定性顺序为:全酶 + 底物>脱辅基酶。

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