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[小球藻谷氨酸脱氢酶的比较研究]

[Comparative study of glutamate dehydrogenases of Chlorella].

作者信息

Shatilov V R, Kasparova M A, Ambartsumian B G, Kretovich V L

出版信息

Biokhimiia. 1975 Nov-Dec;40(6):1237-45.

PMID:2335
Abstract

The kinetic properties of the constitutive double specific glutamate dehydrogenase (NAD(P)--GDH) and the inducible NADP-specific glutamate dehydrogenase (NADP--GDH) of Chlorella pyrenoidosa Pringsheim 82T (thermophilic strain) in a deaminating reaction have been studied. NAD(P)-GDH behaves in a deamination as a Michaelis-Menten enzyme. NADP-GDH displays some lag-period before a steady-state phase. The duration of this lag depends on a substrate concentration. Besides that, an effect of all the substrates on a heat inactivation of both GDH and a product inhibition have been studied. All the substrates except the reduced co-factors protect effectively GDH from the heat inactivation, especially the thermolabille NADP-GDH. On the contrary, NAD(P)-H promote the heat inactivation of both GDH. The product inhibition analysis shows that the inducible NADP-GDH acts in vivo as a synthetic enzyme. In the previous paper (V. R. Shatilov et all., 1974, Dokl. Acad. Nauk USSR, 216,223) it was shown for the constitutive GDH that p-CMB strongly inhibited a desamination and slightly (if any) affect an amination. It this paper it is shown that action of p-CMB on the amination depends on the presence of NAD+ (not NADP+ or L-glutamate). p-CMB and NAD+ affect tha amination in a strongly sunergetic manner. Some suggestions about the intracellular localization of chlorella GDH are made.

摘要

研究了小球藻普林谢姆82T(嗜热菌株)组成型双特异性谷氨酸脱氢酶(NAD(P)--GDH)和诱导型NADP特异性谷氨酸脱氢酶(NADP--GDH)在脱氨反应中的动力学特性。NAD(P)-GDH在脱氨反应中表现为米氏酶。NADP-GDH在稳态期之前有一段滞后时间。这段滞后时间的长短取决于底物浓度。此外,还研究了所有底物对两种GDH热失活的影响以及产物抑制作用。除了还原型辅酶外,所有底物都能有效保护GDH免受热失活,尤其是对热不稳定的NADP-GDH。相反,NAD(P)-H会促进两种GDH的热失活。产物抑制分析表明,诱导型NADP-GDH在体内作为合成酶起作用。在之前的论文(V. R. Shatilov等人,《苏联科学院报告》,1974年,第216卷,第223页)中表明,对于组成型GDH,对氯汞苯甲酸强烈抑制脱氨作用,对氨化作用影响轻微(如果有影响的话)。在本文中表明,对氯汞苯甲酸对氨化作用的影响取决于NAD+的存在(而非NADP+或L-谷氨酸)。对氯汞苯甲酸和NAD+以强烈的协同方式影响氨化作用。文中还对小球藻GDH的细胞内定位提出了一些建议。

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