Abstract
The metabolic reactions responsible for the release of endogenous pyrogen from rabbit granulocytes incubated in 0.15 M NaCl are specifically inhibited by the presence of K(+) (and by related alkali metal ions, Rb(+) and Cs(+)) in the medium. The inhibitory action of K(+) apparently involves penetration of the cell membrane and is directly antagonized by the cardiac glycoside, ouabain. It is concluded, therefore, that the inhibition of pyrogen release by extracellular K(+) is due to transport of K(+) into the cell. Although the precise molecular mechanisms which are responsible for the release of pyrogen from granulocytes incubated in K-free saline have not been elucidated, further study of the process has revealed: (a) that it is preceded by the accumulation of pyrogen within the cell, (b) that it depends upon the catalytic action of one or more sulfhydryl-containing enzymes, (c) that it does not require energy, either from glycolysis or from reactions depending on molecular oxygen, and (d) that its inhibition by K(+) and by arsenite is qualitatively similar to the depression caused by these same reagents on the release of other leucocytic proteins; i.e., lysozyme and aldolase.
Keywords
ALDEHYDE-LYASES
BACTERIA
BACTERIAL PROTEINS
BODY FLUIDS
CALCIUM
CARBOHYDRATE METABOLISM
ENZYMES
EXPERIMENTAL LAB STUDY
EXTRACELLULAR SPACE
EXUDATES AND TRANSUDATES
FEVER
HISTOCYTOCHEMISTRY
HYDROGEN-ION CONCENTRATION
INFECTION
LEUKOCYTES
METABOLISM
MURAMIDASE
OUABAIN
PHOSPHATES
POTASSIUM
PYROGENS
RABBITS
SODIUM CHLORIDE
SULFHYDRYL COMPOUNDS
MeSH Terms
Aldehyde-Lyases
Animals
Bacteria
Bacterial Proteins
Body Fluids
Calcium
Carbohydrate Metabolism
Enzymes
Extracellular Space
Exudates and Transudates
Fever
Histocytochemistry
Hydrogen-Ion Concentration
Infections
Interleukin-1
Leukocytes
Metabolism
Muramidase
Neutrophils
Ouabain
Phosphates
Potassium
Pyrogens
Rabbits
Research
Sodium Chloride
Sulfhydryl Compounds
Chemicals
Bacterial Proteins
Enzymes
Interleukin-1
Phosphates
Pyrogens
Sulfhydryl Compounds
leukocyte endogenous mediator
Sodium Chloride
Ouabain
Muramidase
Aldehyde-Lyases
Potassium
Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
BERLIN R D
WOOD W B
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