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Energy Requirements for Maltose Transport in Yeast

Data up to Jan 2025

Published1977
Citations215
References28

Total Citations Per Year

Abstract

References (28)

Colorimetric Method for Determination of Sugars and Related Substances

1956 • 48,885 citations

Different Mechanisms of Energy Coupling for the Shock-sensitive and Shock-resistant Amino Acid Permeases of Escherichia coli

1974 • 349 citations

Conservation and transformation of energy by bacterial membranes.

1972 • 331 citations

Performance and conservation of osmotic work by proton-coupled solute porter systems

1973 • 279 citations

Proton-coupled ?-galactoside translocation in non-metabolizingEscherichia coli

1972 • 229 citations

Depolarization of the Plasma Membrane of Neurospora During Active Transport of Glucose: Evidence for a Proton-Dependent Cotransport System

1974 • 226 citations

The absorption of protons with specific amino acids and carbohydrates by yeast

1973 • 180 citations

Energy Coupling in the Transport of β-Galactosides by Escherichia Coli: Effect of Proton Conductors

1969 • 155 citations

The Determination of the Membrane Potential of Chlorella vulgaris. Evidence for Electrogenic Sugar Transport

1976 • 154 citations

The Hexose‐Proton Symport System of Chlorella vulgaris

1974 • 135 citations

Transport of sugars in yeasts

1962 • 129 citations

Transport and transport-associated phosphorylation of 2-deoxy-d-glucose in yeast

1968 • 113 citations

Specificity of the Constitutive Hexose Transport in Yeast

1968 • 110 citations

Regulatory properties of the constitutive hexose transport in saccharomyces cerevisiae

1974 • 98 citations

Galactose Transport in Saccharomyces cerevisiae II. Characteristics of Galactose Uptake and Exchange in Galactokinaseless Cells

1970 • 81 citations

Characterization of the active hexose transport system of chlorella vulgaris

1971 • 72 citations

Protonmotive force as the source of energy for adenosine 5'-triphosphate synthesis in Escherichia coli

1976 • 68 citations

Uptake of α-thioethyl D-glucopyranoside by Saccharomyces cerevisiae I. The genetic control of facilitated diffusion and active transport

1964 • 66 citations

An energy‐linked proton‐extrusion across the cell membrane Rhodotorula gracilis

1975 • 57 citations

Uptake of α-thioethyl D-glucopyranoside by Saccharomyces cerevisiae II. General characteristics of an active transport system

1964 • 50 citations

Nature of the uptake of d-galactose, d-glucose and α-methyl-d-glucoside by Saccharomyces cerevisiae

1974 • 46 citations

Transport and transport-associated phosphorylation of galactose in Saccharomyces cerevisiae

1972 • 44 citations

Proton translocation during anaerobic energy production in Saccharomyces cerevisiae

1974 • 41 citations

tight coupling of monosaccharide transport and metabolism inRhodotorula gracilis

1968 • 39 citations

The absorption of protons with α-methyl glucoside and α-thioethyl glucoside by the yeast N.C.Y.C. 240. Evidence against the phosphorylation hypothesis

1977 • 33 citations

[11] Paper chromatography of sugars

1957 • 31 citations

Uptake of amino acids by actidione-treated yeast cells

1971 • 27 citations

Uptake of amino acids by actidione-treated yeast cells

1971 • 25 citations

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Energy Requirements for Maltose Transport in Yeast (1977) – European Journal of Biochemistry | Metascience Observatory Explorer