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PMID: 5430786 Published · ppublish English Journal Article

Studies on the origin of human leukocytic pyrogen.

The Journal of experimental medicine ·Vol. 131 ·No. 4 ·1970-04-01 ·Pages 727-43

Nordlund JJ, Root RK, Wolff SM

Abstract

Release of the protein molecule, leukocytic pyrogen, is one of the many reactions exhibited by leukocytes after phagocytosis. After the ingestion of heat-killed S. albus, a 3-4 hr latent period exists, during which human peripheral leukocytes release no pyrogen, yet cellular metabolism is altered in such a way that pyrogen output may subsequently occur in the absence of further phagocytosis. Transcription of messenger RNA and translation of new protein are initial events in the. activation process, since addition of the inhibitors, actinomycin D, and cycloheximide or puromycin, during this period markedly depressed or abolished subsequent pyrogen release. These effects were noted to be dependent upon the time of addition of the inhibitors. None of the inhibitor drugs interfered with cell viability as measured by phagocytosis and hexose monophosphate shunt activity, nor did they alter the pyrogenicity of preformed leukocytic pyrogen. Vincristine did not inhibit pyrogen formation, consistent with its reported failure to alter RNA synthesis in mature human granulocytes. The glycolytic inhibitor, sodium fluoride, blocked pyrogen release both when added prior to particle ingestion or 1 hr after the initiation of phagocytosis. Whereas inhibition of phagocytosis would explain the sodium fluoride effect prior to 1 hr, this was not observed in leukocyte preparations incubated for 1 hr with S. albus before adding sodium fluoride. When sodium fluoride was added to preparations 2 hr after the start of incubation, the LP production was unimpaired. Potassium cyanide had no effect on cell activation or pyrogen release. These findings suggest that the primary energy supply for the activation process is derived from high energy phosphate bonds provided by anaerobic glycolysis. Since the major amount of cell activation appears to occur in the 1st hr after phagocytosis, this energy might be involved in the induction of a genome leading to the transcription of m-RNA and its translation into new protein or is required for polysome integrity during protein synthesis. It is suggested that this new protein may be leukocytic pyrogen itself, or an enzyme responsible for cleaving it from an inactive precursor.

MeSH Terms
Animals Carbon Isotopes Cyanides/pharmacology Cycloheximide/pharmacology Dactinomycin/pharmacology Endotoxins/pharmacology Fluorides/pharmacology Glycolysis Humans Leukocytes/drug effects,metabolism Phagocytosis Protein Biosynthesis Proteins/antagonists & inhibitors Puromycin/pharmacology Pyrogens/biosynthesis,blood RNA, Messenger/antagonists & inhibitors,metabolism Rabbits Staphylococcus Vincristine/pharmacology
Chemicals
Carbon Isotopes Cyanides Endotoxins Proteins Pyrogens RNA, Messenger Dactinomycin Puromycin Vincristine Cycloheximide Fluorides
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Nordlund J J
Root R K
Wolff S M
References (32)
32 references, click to expand
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Article Info
Journal
The Journal of experimental medicine
Abbr.
J Exp Med
ISSN
0022-1007
Published
1970-04-01
Pages
727-43
Language
English
Region
United States
NLM ID
2985109R
PMCID
PMC2138772
Subset
IM
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