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Fluctuating metabolite levels in yeast cells and extracts, and the control of phosphofructokinase activity in vitro.

作者信息

Betz A, Moore C

出版信息

Arch Biochem Biophys. 1967 May;120(2):268-73. doi: 10.1016/0003-9861(67)90238-x.

DOI:10.1016/0003-9861(67)90238-x
PMID:4226719
Abstract
摘要

相似文献

1
Fluctuating metabolite levels in yeast cells and extracts, and the control of phosphofructokinase activity in vitro.酵母细胞和提取物中代谢物水平的波动以及体外磷酸果糖激酶活性的控制
Arch Biochem Biophys. 1967 May;120(2):268-73. doi: 10.1016/0003-9861(67)90238-x.
2
The mechanism of inhibition of glycolysis by quinidine in heart tissue in vitro.奎尼丁在体外对心脏组织糖酵解的抑制机制。
Biochem Pharmacol. 1968 Aug;17(8):1717-25. doi: 10.1016/0006-2952(68)90234-7.
3
Correlations between adenine nucleotide levels and the velocities of rate-determining steps in the glycolysis and respiration of intact Ehrlich ascites carcinoma cells.腺嘌呤核苷酸水平与完整艾氏腹水癌细胞糖酵解和呼吸作用中限速步骤速度之间的相关性。
Biochim Biophys Acta. 1966 Jun 15;118(3):495-511. doi: 10.1016/s0926-6593(66)80092-9.
4
Two interconvertible forms of yeast phosphofructokinase with different sensitivity to endproduct inhibition.酵母磷酸果糖激酶的两种可相互转化的形式,对终产物抑制具有不同的敏感性。
Biochem Biophys Res Commun. 1964 Mar 26;15(3):243-9. doi: 10.1016/0006-291x(64)90154-8.
5
Myocardial adenine nucleotides, hexose phosphates and inorganic phosphate, and the regulation of phosphofructokinase activity during fluoroacetate poisoning in the rat.大鼠氟乙酸盐中毒时心肌腺嘌呤核苷酸、己糖磷酸和无机磷酸盐以及磷酸果糖激酶活性的调节
Biochem Pharmacol. 1974 Nov 15;23(22):3179-89. doi: 10.1016/0006-2952(74)90604-2.
6
Cooperation of glycolytic enzymes.糖酵解酶的协同作用。
Adv Enzyme Regul. 1969;7:149-67. doi: 10.1016/0065-2571(69)90016-8.
7
Control of reduced diphosphopyridine nucleotide oscillations in beef heart extracts. II. Oscillations of glycolytic intermediates and adenine nucleotides.牛肉心提取物中还原二磷酸吡啶核苷酸振荡的控制。II. 糖酵解中间产物和腺嘌呤核苷酸的振荡
Arch Biochem Biophys. 1968 Apr;125(1):157-65. doi: 10.1016/0003-9861(68)90650-4.
8
Effect of pH on the kinetics of frog muscle phosphofructokinase.pH对青蛙肌肉磷酸果糖激酶动力学的影响。
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9
Mechanism of the Crabtree effect in yeast grown with different glucose concentrations.不同葡萄糖浓度下培养的酵母中克奈特瑞效应的机制。
Arch Biochem Biophys. 1966 Feb;113(2):324-30. doi: 10.1016/0003-9861(66)90193-7.
10
[Phosphofructokinase activity and Pasteur effect regulation in early embryogenesis].[早期胚胎发育中的磷酸果糖激酶活性与巴斯德效应调节]
Biokhimiia. 1967 Mar-Apr;32(2):416-22.

引用本文的文献

1
Selection for rapid uptake of scarce or fluctuating resource explains vulnerability of glycolysis to imbalance.选择快速吸收稀缺或波动资源解释了糖酵解对失衡的脆弱性。
PLoS Comput Biol. 2021 Jan 19;17(1):e1008547. doi: 10.1371/journal.pcbi.1008547. eCollection 2021 Jan.
2
[Control of aerobic metabolism in starved yeast cells supplied with glucose and ammonia].[在供应葡萄糖和氨的饥饿酵母细胞中需氧代谢的控制]
Planta. 1974 Mar;117(1):11-27. doi: 10.1007/BF00388675.
3
Accumulation of pyrophosphate and other energy-rich phosphorous compounds under various conditions of yeast growth.
在酵母生长的各种条件下,焦磷酸和其他富含能量的磷化合物的积累。
Arch Microbiol. 1981 Feb;128(4):394-7. doi: 10.1007/BF00405919.
4
Adenylate energy charge in Escherichia coli during growth and starvation.大肠杆菌在生长和饥饿期间的腺苷酸能荷
J Bacteriol. 1971 Dec;108(3):1072-86. doi: 10.1128/jb.108.3.1072-1086.1971.
5
Dissipative structures for an allosteric model. Application to glycolytic oscillations.变构模型的耗散结构。在糖酵解振荡中的应用。
Biophys J. 1972 Oct;12(10):1302-15. doi: 10.1016/S0006-3495(72)86164-2.
6
Adenylate energy charge in Saccharomyces cerevisiae during starvation.酿酒酵母在饥饿期间的腺苷酸能荷
J Bacteriol. 1975 Mar;121(3):975-82. doi: 10.1128/jb.121.3.975-982.1975.
7
In vivo and in vitro studies on the glucose dependent inactivation of yeast cytoplasmic malate dehydrogenase.酵母细胞质苹果酸脱氢酶葡萄糖依赖性失活的体内和体外研究。
Arch Microbiol. 1977 Oct 24;115(1):55-60. doi: 10.1007/BF00427845.