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PMID: 18140663 Published · ppublish English Journal Article

The use of radioactive lysine in studies of protein metabolism; synthesis and utilization of plasma proteins.

The Journal of experimental medicine ·Vol. 90 ·No. 4 ·1949-10-00 ·Pages 297-313

MILLER LL, BALE WF

Abstract

Racemic lysine labeled with C(14) in the epsilon carbon position was fed to dogs. The distribution of C(14) in blood and tissue fractions is recorded. In normal dogs sacrificed at 24 hours, approximately one-third of the C(14) was found in the urine, one-third in expired air, and one-third in the body, mostly in protein, predomantly as lysine residues. The rate of C(14) excretion as CO(2), hour by hour, paralleled closely the amount of non-protein C(14) in the blood plasma. The liver, kidney, pancreas, and spleen all have high values for C(14) in 24 hour and 17 day experiments. The gastrointestinal tract is significantly high in the 24 hour experiments. Plasma protein from animals previously fed C(14) containing lysine and thus in turn labeled, was transfused into other dogs and the rate of disappearance of albumin and globulin fractions from the circulation of the recipient dog followed. The results lead to the conclusion that as a whole, plasma proteins are utilized and replaced at a rate of at least 10 per cent per 24 hours. This minimum rate is substantially faster than turnover rates commonly accepted and emphasizes the rôle played by the plasma proteins in the protein economy of the body. The exact rate determination is made uncertain by the lack of knowledge of the magnitude of the amount of protein in solution in extracellular and lymph spaces and its rate of equilibrium with circulating plasma proteins. Evidence from these transfusion studies indicates that plasma globulin is metabolized at a significantly faster rate than plasma albumin. This is confirmed by the observation that following the feeding of labeled lysine to dogs, C(14) is first incorporated in globulin in high concentration but that later it also disappears more rapidly from the globulin fraction. These data suggest that the period of bone marrow maturation of the red cell during which time its related hemoglobin is synthesized does not exceed 3 to 5 days.

Keywords
PROTEINS/metabolism RADIOACTIVE SUBSTANCES/lysine
MeSH Terms
Animals Blood Proteins Dogs Erythrocytes Kidney Liver Lysine Proteins/metabolism Radioisotopes Spleen
Chemicals
Blood Proteins Proteins Radioisotopes Lysine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
MILLER L L
BALE W F
References (5)
5 references, click to expand
  1. HEMOGLOBIN AND PLASMA PROTEIN : SIMULTANEOUS PRODUCTION DURING CONTINUED BLEEDING AS INFLUENCED BY DIET PROTEIN AND OTHER FACTORS.
    J Exp Med. 1940 Oct 31;72(5):479-97 PMID: 19871038
  2. RADIOACTIVE IRON AND ITS METABOLISM IN ANEMIA : ITS ABSORPTION, TRANSPORTATION, AND UTILIZATION.
    J Exp Med. 1939 Apr 30;69(5):739-53 PMID: 19870874
  3. PLASMA PROTEIN METABOLISM-NORMAL AND ASSOCIATED WITH SHOCK : OBSERVATIONS USING PROTEIN LABELED BY HEAVY NITROGEN IN LYSINE.
    J Exp Med. 1944 Dec 1;80(6):455-75 PMID: 19871430
  4. BLOOD PLASMA PROTEIN REGENERATION CONTROLLED BY DIET : I. LIVER AND CASEIN AS POTENT DIET FACTORS.
    J Exp Med. 1934 Feb 28;59(3):251-67 PMID: 19870244
  5. TRAUMATIC SHOCK: IV. A STUDY OF THE PROBLEM OF THE "LOST PLASMA" IN HEMORRHAGIC SHOCK BY THE USE OF RADIOACTIVE PLASMA PROTEIN.
    J Clin Invest. 1943 Mar;22(2):285-303 PMID: 16695006
Article Info
Journal
The Journal of experimental medicine
Abbr.
J Exp Med
ISSN
0022-1007
Published
1949-10-00
Pages
297-313
Language
English
Region
United States
NLM ID
2985109R
PMCID
PMC2135912
Subset
OM
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