scholarly article | Q13442814 |
P2093 | author name string | Prévost D | |
P. Nadeau | |||
D. Prévost | |||
J. Cloutier | |||
H. Antoun | |||
P2860 | cites work | Protein measurement with the Folin phenol reagent | Q20900776 |
Major cold shock protein of Escherichia coli | Q24559918 | ||
Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4 | Q25938983 | ||
Enhancement of chilling tolerance of a cyanobacterium by genetic manipulation of fatty acid desaturation | Q28301856 | ||
A Film Detection Method for Tritium-Labelled Proteins and Nucleic Acids in Polyacrylamide Gels | Q29547782 | ||
The heat-shock response | Q29619473 | ||
Induction of proteins in response to low temperature in Escherichia coli | Q36237391 | ||
groEL and dnaK genes of Escherichia coli are induced by UV irradiation and nalidixic acid in an htpR+-dependent fashion | Q36252049 | ||
Genetic control of heat-shock protein synthesis and its bearing on growth and thermal resistance in Escherichia coli K-12 | Q36280560 | ||
Defect in expression of heat-shock proteins at high temperature in xthA mutants | Q36282589 | ||
Effects of low temperature on in vivo and in vitro protein synthesis in Escherichia coli and Pseudomonas fluorescens | Q36421161 | ||
EFFECT OF TEMPERATURE ON THE COMPOSITION OF FATTY ACIDS IN ESCHERICHIA COLI | Q37428575 | ||
Transient regulation of protein synthesis in Escherichia coli upon shift-up of growth temperature | Q39855921 | ||
Growth of psychrophilic bacteria | Q40314660 | ||
Temperature-induced synthesis of specific proteins in Escherichia coli: evidence for transcriptional control | Q40335227 | ||
A rapid method for determining the viability of Escherichia coli cells subjected to the action of low temperatures | Q43564287 | ||
Life at the limits. Considerations on how bacteria can grow at extremes of temperature and pressure, or with high concentrations of ions and solutes | Q44198093 | ||
Limited capacity for protein synthesis at zero degrees centigrade in Escherichia coli | Q47818135 | ||
INFLUENCE OF TEMPERATURE ON FATTY ACID COMPOSITION OF PSYCHROPHILIC AND MESOPHILIC SERRATIA SPECIES | Q52763951 | ||
P433 | issue | 9 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | cold | Q270952 |
biological adaptation | Q67504163 | ||
P304 | page(s) | 2846-2853 | |
P577 | publication date | 1992-09-01 | |
P1433 | published in | Applied and Environmental Microbiology | Q4781593 |
P1476 | title | Heat and cold shock protein synthesis in arctic and temperate strains of rhizobia | |
P478 | volume | 58 |
Q37972786 | Bacterial gene expression at low temperatures |
Q35607721 | Cold shock and cold acclimation proteins in the psychrotrophic bacterium Arthrobacter globiformis SI55. |
Q28488921 | Cold shock stress-induced proteins in Bacillus subtilis |
Q39846454 | Differentiation between cold shock proteins and cold acclimation proteins in a mesophilic gram-positive bacterium, Enterococcus faecalis JH2-2 |
Q60484710 | Effect of Heat and pH Stress in the Growth of Chickpea Mesorhizobia |
Q33986514 | Identification of cold shock gene loci in Sinorhizobium meliloti by using a luxAB reporter transposon |
Q39128353 | Potential drivers of microbial community structure and function in Arctic spring snow. |
Q39343249 | Proteomic analysis of Psychrobacter cryohalolentis K5 during growth at subzero temperatures |
Q33999357 | Relationship of critical temperature to macromolecular synthesis and growth yield in Psychrobacter cryopegella |
Q35949283 | Structure and function of cold shock proteins in archaea. |
Q33986509 | Transcriptional organization and regulation of a polycistronic cold shock operon in Sinorhizobium meliloti RM1021 encoding homologs of the Escherichia coli major cold shock gene cspA and ribosomal protein gene rpsU. |
Q35630068 | capA, a cspA-like gene that encodes a cold acclimation protein in the psychrotrophic bacterium Arthrobacter globiformis SI55 |
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