Cardiolipin de novo biosynthesis is elevated but cardiolipin is not essential for nucleotide synthesis during entry into S phase of the mammalian cell cycle

2008 ◽  
Vol 22 (S2) ◽  
pp. 270-270
Author(s):  
Grant Michael Hatch ◽  
Kristin Hauff ◽  
Dorota Linda
2008 ◽  
Vol 417 (2) ◽  
pp. 573-582 ◽  
Author(s):  
Kristin Hauff ◽  
Dorota Linda ◽  
Grant M. Hatch

CL (cardiolipin) is a key phospholipid involved in ATP generation. Since progression through the cell cycle requires ATP we examined regulation of CL synthesis during S-phase in human cells and investigated whether CL or CL synthesis was required to support nucleotide synthesis in S-phase. HeLa cells were made quiescent by serum depletion for 24 h. Serum addition resulted in substantial stimulation of [methyl-3H]thymidine incorporation into cells compared with serum-starved cells by 8 h, confirming entry into the S-phase. CL mass was unaltered at 8 h, but increased 2-fold by 16 h post-serum addition compared with serum-starved cells. The reason for the increase in CL mass upon entry into S-phase was an increase in activity and expression of CL de novo biosynthetic and remodelling enzymes and this paralleled the increase in mitochondrial mass. CL de novo biosynthesis from D-[U-14C]glucose was elevated, and from [1,3-3H]glycerol reduced, upon serum addition to quiescent cells compared with controls and this was a result of differences in the selection of precursor pools at the level of uptake. Triascin C treatment inhibited CL synthesis from [1-14C]oleate but did not affect [methyl-3H]thymidine incorporation into HeLa cells upon serum addition to serum-starved cells. Barth Syndrome lymphoblasts, which exhibit reduced CL, showed similar [methyl-3H]thymidine incorporation into cells upon serum addition to serum-starved cells compared with cells from normal aged-matched controls. The results indicate that CL de novo biosynthesis is up-regulated via elevated activity and expression of CL biosynthetic genes and this accounted for the doubling of CL seen during S-phase; however, normal de novo CL biosynthesis or CL itself is not essential to support nucleotide synthesis during entry into S-phase of the human cell cycle.


2008 ◽  
Vol 106 (4) ◽  
pp. 368-374 ◽  
Author(s):  
Yoshihiko Tashima ◽  
Hiroyuki Hamada ◽  
Masahiro Okamoto ◽  
Taizo Hanai

2020 ◽  
Author(s):  
Robert F. Brooks

AbstractThe Restriction Point (R) in the mammalian cell cycle is regarded as a critical transition in G1 when cells become committed to enter S phase even in the absence of further growth factor stimulation. Classic time-lapse studies by Zetterberg and Larsson suggested that the acquisition of growth factor independence (i.e. passage of R) occurred very abruptly 3-4 hours after mitosis, with most cell cycle variability arising between R and entry into S phase. However, the cycle times of the post-R cells that continued on to mitosis after serum step-down without perturbation were far less variable than the control cells with which they were compared. A re-analysis of the data, presented here, shows that when the timing of R and entry in mitosis are compared for the same experiments, the curves are superimposable and statistically indistinguishable. This indicates that the data are compatible with the timing of R contributing to much of the overall variability in the cell cycle, contrary to the conclusions of Zetterberg and colleagues.


2009 ◽  
Vol 10 (Suppl 12) ◽  
pp. S16 ◽  
Author(s):  
Roberta Alfieri ◽  
Matteo Barberis ◽  
Ferdinando Chiaradonna ◽  
Daniela Gaglio ◽  
Luciano Milanesi ◽  
...  

1979 ◽  
Vol 35 (1) ◽  
pp. 53-58
Author(s):  
P.M. Naha

Complementation between temperature-sensitive (ts) variants of Balb/c-3T3 defective in the G1 phase of its cell cycle was measured in the [3H]thymidine-labeling indices of the multinucleated cells during incubation at the restricted temperature (38 degrees C) following cell fusion. One ts variant from each group along the length of the G1 phase was tested for complementation. Varying degrees of complementation were observed between the 4 ts variants tested, judging by the time of entry into S-phase and the degree of synchrony attained. At least 3 complementation groups were discernible.


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