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FDP-activation of yeast pyruvate kinase.

作者信息

Hess B, Haeckel R, Brand K

出版信息

Biochem Biophys Res Commun. 1966 Sep 22;24(6):824-31. doi: 10.1016/0006-291x(66)90322-6.

DOI:10.1016/0006-291x(66)90322-6
PMID:4291216
Abstract
摘要

相似文献

1
FDP-activation of yeast pyruvate kinase.酵母丙酮酸激酶的FDP激活作用
Biochem Biophys Res Commun. 1966 Sep 22;24(6):824-31. doi: 10.1016/0006-291x(66)90322-6.
2
Regulation of pyruvate kinase by fructose 1,6-diphosphate in Saccharomyces cerevisiae.1,6-二磷酸果糖对酿酒酵母中丙酮酸激酶的调节作用
Eur J Biochem. 1971 Jan 1;18(1):59-64. doi: 10.1111/j.1432-1033.1971.tb01214.x.
3
Some differences in pyruvate kinase regulation in selected yeasts.
Biochem Biophys Res Commun. 1971 Jan 22;42(2):287-91. doi: 10.1016/0006-291x(71)90100-8.
4
Fructose 1,6-diphosphate and 3',5'-cyclic AMP as positive effectors of pyruvate kinase in developing embryos.1,6 - 二磷酸果糖和3',5'-环磷酸腺苷作为发育中胚胎丙酮酸激酶的正效应物。
Biochim Biophys Acta. 1967 Sep 12;146(1):301-4. doi: 10.1016/0005-2744(67)90101-5.
5
Purification and allosteric properties of yeast pyruvate kinase.酵母丙酮酸激酶的纯化及其别构性质
Hoppe Seylers Z Physiol Chem. 1968 May;349(5):699-714. doi: 10.1515/bchm2.1968.349.1.699.
6
Factors affecting the level and activity of pyruvate kinase from Coprinus lagopus sensu Buller.影响毛头鬼伞(按布勒的定义)丙酮酸激酶水平和活性的因素
J Gen Microbiol. 1971 Jun;66(3):361-70. doi: 10.1099/00221287-66-3-361.
7
A regenerating system for studies of phosphoryl transfer from ATP.
Anal Biochem. 1968 Feb;22(2):211-8. doi: 10.1016/0003-2697(68)90308-4.
8
[Sensitivity of fructose diphosphate binding sites of yeast pyruvate kinase to pyruvate kinase antibodies].[酵母丙酮酸激酶的果糖二磷酸结合位点对丙酮酸激酶抗体的敏感性]
Hoppe Seylers Z Physiol Chem. 1968 Jan;349(1):104-6.
9
Application of kinetics of yeast pyruvate kinase in vitro to calculation of glycolytic flux in the anaerobic yeast cell.
Hoppe Seylers Z Physiol Chem. 1972 Jul;353(7):1178-84. doi: 10.1515/bchm2.1972.353.2.1178.
10
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.

引用本文的文献

1
Divalent cations in human liver pyruvate kinase exemplify the combined effects of complex-equilibrium and allosteric regulation.二价阳离子在人肝丙酮酸激酶中体现了复杂平衡和变构调节的综合作用。
Sci Rep. 2023 Jun 29;13(1):10557. doi: 10.1038/s41598-023-36943-2.
2
Organism-adapted specificity of the allosteric regulation of pyruvate kinase in lactic acid bacteria.在乳酸菌中,别构调节丙酮酸激酶的生物适应性特异性。
PLoS Comput Biol. 2013;9(7):e1003159. doi: 10.1371/journal.pcbi.1003159. Epub 2013 Jul 25.
3
Some Properties of Partially Purified Pyruvate Kinase from Euglena gracilis Klebs var. bacillaris.
来自小球藻科克巴变种的部分纯化丙酮酸激酶的某些性质。
Plant Physiol. 1974 Oct;54(4):617-23. doi: 10.1104/pp.54.4.617.
4
Futile cycles in Saccharomyces cerevisiae strains expressing the gluconeogenic enzymes during growth on glucose.在葡萄糖上生长期间表达糖异生酶的酿酒酵母菌株中的无效循环。
Proc Natl Acad Sci U S A. 1993 Feb 15;90(4):1290-4. doi: 10.1073/pnas.90.4.1290.
5
Glucose 6-phosphate activation of pyruvate kinase from Mycobacterium smegmatis.耻垢分枝杆菌丙酮酸激酶的6-磷酸葡萄糖激活作用
Biochem J. 1981 Feb 1;193(2):435-40. doi: 10.1042/bj1930435.
6
Regulation of carbohydrate metabolism by 2,5-anhydro-D-mannitol.2,5-脱水-D-甘露糖醇对碳水化合物代谢的调节作用
Proc Natl Acad Sci U S A. 1983 Jul;80(14):4301-5. doi: 10.1073/pnas.80.14.4301.
7
Concentration of metabolites and the regulation of phosphofructokinase and fructose-1,6-bisphosphatase in Saccharomyces cerevisiae.酿酒酵母中代谢物的浓度以及磷酸果糖激酶和果糖-1,6-二磷酸酶的调节
Arch Microbiol. 1981 May;129(3):216-20. doi: 10.1007/BF00425254.
8
Regulation of the concentration or activity of pyruvate kinase in yeasts and its relationship to gluconeogenesis.酵母中丙酮酸激酶浓度或活性的调控及其与糖异生的关系。
Biochem J. 1967 Feb;102(2):23C-25C. doi: 10.1042/bj1020023c.
9
A comparison of the properties of the pyruvate kinases of the fat body and flight muscle of the adult male desert locust.成年雄性沙漠蝗虫脂肪体和飞行肌中丙酮酸激酶特性的比较。
Biochem J. 1969 Feb;111(3):359-64. doi: 10.1042/bj1110359.
10
Utilization of malate or aspartate by a yeast lacking malate enzyme.缺乏苹果酸酶的酵母对苹果酸或天冬氨酸的利用
Arch Mikrobiol. 1968;62(2):192-7. doi: 10.1007/BF00410405.