Actidione (cycloheximide), an antibiotic inhibitor of protein synthesis, blocked the incorporation of leucine and lysine during the S phase of Physarum polycephalum. Actidione added during the early prophase period in which mitosis is blocked totally inhibited the initiation of DNA synthesis. Actidione treatment in late prophase, which permitted mitosis in the absence of protein synthesis, permitted initiation of a round of DNA replication making up between 20 and 30% of the unreplicated nuclear DNA. Actidione treatment during the S phase permitted a round of replication similar to the effect at the beginning of S. The DNA synthesized in the presence of actidione was replicated semiconservatively and was stable through at least the mitosis following antibiotic removal. Experiments in which fluorodeoxyuridine inhibition was followed by thymidine reversal in the presence of actidione suggest that the early rounds of DNA replication must be completed before later rounds are initiated.
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1 December 1966
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December 01 1966
LIMITED DNA SYNTHESIS IN THE ABSENCE OF PROTEIN SYNTHESIS IN PHYSARUM POLYCEPHALUM
J. E. Cummins,
J. E. Cummins
From the McArdle Laboratory for Cancer Research, Medical Center, University of Wisconsin, Madison.
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H. P. Rusch
H. P. Rusch
From the McArdle Laboratory for Cancer Research, Medical Center, University of Wisconsin, Madison.
Search for other works by this author on:
J. E. Cummins
From the McArdle Laboratory for Cancer Research, Medical Center, University of Wisconsin, Madison.
H. P. Rusch
From the McArdle Laboratory for Cancer Research, Medical Center, University of Wisconsin, Madison.
Dr. Cummins' present address is the Department of Biological Sciences, Rutgers, The State University, New Brunswick, New Jersey
Received:
May 12 1966
Online ISSN: 1540-8140
Print ISSN: 0021-9525
Copyright © 1966 by The Rockefeller University Press
1966
J Cell Biol (1966) 31 (3): 577–583.
Article history
Received:
May 12 1966
Citation
J. E. Cummins, H. P. Rusch; LIMITED DNA SYNTHESIS IN THE ABSENCE OF PROTEIN SYNTHESIS IN PHYSARUM POLYCEPHALUM . J Cell Biol 1 December 1966; 31 (3): 577–583. doi: https://doi.org/10.1083/jcb.31.3.577
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