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本文引用的文献

1
Investigation of reduced nicotinamide adenine dinucleotide phosphate and acyl-binding sites on avian fatty acid synthase.禽脂肪酸合酶上还原型烟酰胺腺嘌呤二核苷酸磷酸及酰基结合位点的研究
Biochemistry. 1982 Jun 8;21(12):2863-70. doi: 10.1021/bi00541a009.
2
Stabilization and physicochemical properties of the fatty acid synthetase of chicken liver.鸡肝脂肪酸合成酶的稳定性及物理化学性质
Biochemistry. 1970 Jan 20;9(2):239-45. doi: 10.1021/bi00804a008.
3
The binding of reduced nicotinamide adenine dinucleotide phosphate to mammalian and avian fatty acid synthetases. Number of binding sites and the effect of reagents and conditions on the binding of reduced nicotinamide adenine dinucleotide phosphate to enzyme.还原型烟酰胺腺嘌呤二核苷酸磷酸与哺乳动物及禽类脂肪酸合成酶的结合。结合位点数量以及试剂和条件对还原型烟酰胺腺嘌呤二核苷酸磷酸与酶结合的影响。
J Biol Chem. 1970 Apr 25;245(8):2051-9.
4
Synthesis of triacetic acid lactone by the pigeon liver fatty acid synthetase complex.鸽肝脂肪酸合成酶复合物催化合成三乙酸内酯
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5
Substrate inhibition of pigeon liver fatty acid synthetase and optimum assay conditions for over-all synthetase activity.鸽肝脂肪酸合成酶的底物抑制作用及整体合成酶活性的最佳测定条件。
Arch Biochem Biophys. 1974 Jul;163(1):324-31. doi: 10.1016/0003-9861(74)90483-4.
6
Synthesis of fatty acids from malonyl-CoA and NADPH by pigeon liver fatty acid synthetase.鸽肝脂肪酸合成酶利用丙二酰辅酶A和还原型辅酶II合成脂肪酸。
Arch Biochem Biophys. 1974 Jun;162(2):412-20. doi: 10.1016/0003-9861(74)90199-4.
7
Fatty acid synthetase. A steady state kinetic analysis of the reaction catalyzed by the enzyme from pigeon liver.脂肪酸合成酶。对鸽肝中该酶催化反应的稳态动力学分析。
J Biol Chem. 1975 Apr 10;250(7):2709-17.

鸡肝脂肪酸合酶的稳态动力学研究

Steady-state kinetic study of fatty acid synthase from chicken liver.

作者信息

Cox B G, Hammes G G

出版信息

Proc Natl Acad Sci U S A. 1983 Jul;80(14):4233-7. doi: 10.1073/pnas.80.14.4233.

DOI:10.1073/pnas.80.14.4233
PMID:6576333
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC384011/
Abstract

The steady-state kinetics of chicken liver fatty acid synthase has been studied over the pH range 5.9-8.6 in 0.1 M potassium phosphate/1 mM EDTA at 25.0 degrees C. The steady-state initial velocity, v, which was determined by measuring the rate of consumption of NADPH spectrophotometrically over a wide range of substrate concentrations, followed the rate law v = (formula; see text), in which Ac-CoA is acetyl-CoA, Mal-CoA is malonyl-CoA, the Kj are Michaelis constants, the Kj,i are inhibition constants, kcat is the turnover number, and [E0] is the total enzyme concentration. The product CoA is an inhibitor at high concentrations but activates the enzyme at low concentrations when the concentration of Ac-CoA is high. The rate law can be derived from a simple multistep mechanism; in terms of this mechanism, the Michaelis constants are lower bounds to the substrate dissociation constants, and the turnover number contains the first-order rate constants characterizing the reactions required to produce palmitic acid. Plots of kcat, kcat/KN, kcat/KA, and kcat/KM versus pH are bell shaped. Analysis of the results in terms of two ionizable groups indicates that in all cases an ionizable group with an apparent pKa of approximately equal to 6 is of importance. For kcat and kcat/KN, the apparent pKa of the second ionizable group is approximately equal to 7.8, whereas for kcat/KA and kcat/KM, it is approximately equal to 7.

摘要

在25.0℃下,于0.1M磷酸钾/1mM乙二胺四乙酸中,研究了鸡肝脂肪酸合酶在pH值5.9 - 8.6范围内的稳态动力学。通过在广泛的底物浓度范围内分光光度法测量烟酰胺腺嘌呤二核苷酸磷酸(NADPH)的消耗速率来确定稳态初始速度v,其遵循速率方程v =(公式;见原文),其中乙酰辅酶A(Ac-CoA)、丙二酰辅酶A(Mal-CoA)为底物,Kj为米氏常数,Kj,i为抑制常数,kcat为周转数,[E0]为总酶浓度。产物辅酶A(CoA)在高浓度时是抑制剂,但当乙酰辅酶A浓度较高时,低浓度的辅酶A可激活该酶。该速率方程可从一个简单的多步机制推导得出;就该机制而言,米氏常数是底物解离常数的下限,周转数包含表征生成棕榈酸所需反应的一级速率常数。kcat、kcat/KN、kcat/KA和kcat/KM对pH的作图呈钟形。根据两个可电离基团对结果进行分析表明,在所有情况下,一个表观pKa约等于6的可电离基团很重要。对于kcat和kcat/KN,第二个可电离基团的表观pKa约等于7.8,而对于kcat/KA和kcat/KM,其约等于7。