scholarly journals Potency of Carcinogens Derived from Covalent DNA Binding and Stimulation of DNA Synthesis in Rat Liver

1984 ◽  
Vol 12 (1) ◽  
pp. 106-111 ◽  
Author(s):  
Werner K. Lutz ◽  
Marie-Therese Büsser ◽  
Peter Sagelsdorff
1974 ◽  
Vol 60 (2) ◽  
pp. 315-319 ◽  
Author(s):  
LUCIA DESSER-WIEST

SUMMARY The following effects were observed in the liver of male rats in the first few days after adrenalectomy: the rate of thymidine incorporation into DNA was increased three- to fourfold in the 2 days after adrenalectomy. The mitotic index was increased 5·5-fold on the first day and 15-fold on the second day after the operation. The number of tetraploid cells rose from 40 to 68%. While the subsequent administration of cortisol, cortisone or corticosterone to the adrenalectomized animals reduced DNA synthesis to the normal level, testosterone and oestrone were without effect. It is suggested that liver growth is regulated by the concentration of corticosteroids in the blood.


2020 ◽  
Vol 295 (47) ◽  
pp. 15883-15891 ◽  
Author(s):  
Melanie A. Sparks ◽  
Peter M. Burgers ◽  
Roberto Galletto

Successful DNA replication requires carefully regulated mechanisms to overcome numerous obstacles that naturally occur throughout chromosomal DNA. Scattered across the genome are tightly bound proteins, such as transcription factors and nucleosomes, that are necessary for cell function, but that also have the potential to impede timely DNA replication. Using biochemically reconstituted systems, we show that two transcription factors, yeast Reb1 and Tbf1, and a tightly positioned nucleosome, are strong blocks to the strand displacement DNA synthesis activity of DNA polymerase δ. Although the block imparted by Tbf1 can be overcome by the DNA-binding activity of the single-stranded DNA-binding protein RPA, efficient DNA replication through either a Reb1 or a nucleosome block occurs only in the presence of the 5'-3' DNA helicase Pif1. The Pif1-dependent stimulation of DNA synthesis across strong protein barriers may be beneficial during break-induced replication where barriers are expected to pose a problem to efficient DNA bubble migration. However, in the context of lagging strand DNA synthesis, the efficient disruption of a nucleosome barrier by Pif1 could lead to the futile re-replication of newly synthetized DNA. In the presence of FEN1 endonuclease, the major driver of nick translation during lagging strand replication, Pif1-dependent stimulation of DNA synthesis through a nucleosome or Reb1 barrier is prevented. By cleaving the short 5' tails generated during strand displacement, FEN1 eliminates the entry point for Pif1. We propose that this activity would protect the cell from potential DNA re-replication caused by unwarranted Pif1 interference during lagging strand replication.


1985 ◽  
Vol 39 (5) ◽  
pp. 399-404
Author(s):  
Jacek Rozga ◽  
Bengt Jeppsson ◽  
Stig Bengmark

Author(s):  
E. A. Elfont ◽  
R. B. Tobin ◽  
D. G. Colton ◽  
M. A. Mehlman

Summary5,-5'-diphenyl-2-thiohydantoin (DPTH) is an effective inhibitor of thyroxine (T4) stimulation of α-glycerophosphate dehydrogenase in rat liver mitochondria. Because this finding indicated a possible tool for future study of the mode of action of thyroxine, the ultrastructural and biochemical effects of DPTH and/or thyroxine on rat liver mere investigated.Rats were fed either standard or DPTH (0.06%) diet for 30 days before T4 (250 ug/kg/day) was injected. Injection of T4 occurred daily for 10 days prior to sacrifice. After removal of the liver and kidneys, part of the tissue was frozen at -50°C for later biocheailcal analyses, while the rest was prefixed in buffered 3.5X glutaraldehyde (390 mOs) and post-fixed in buffered 1Z OsO4 (376 mOs). Tissues were embedded in Araldlte 502 and the sections examined in a Zeiss EM 9S.Hepatocytes from hyperthyroid rats (Fig. 2) demonstrated enlarged and more numerous mitochondria than those of controls (Fig. 1). Glycogen was almost totally absent from the cytoplasm of the T4-treated rats.


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