DNA replication in early S phase pauses near newly activated origins

RA Frum, PD Chastain II, P Qu, SM Cohen… - Cell Cycle, 2008 - Taylor & Francis
RA Frum, PD Chastain II, P Qu, SM Cohen, DG Kaufman
Cell Cycle, 2008Taylor & Francis
During the S phase of the cell cycle, the entire genome is replicated. There is a high level of
orderliness to this process through the temporally and topologically coordinated activation of
many replication origins situated along chromosomes. We investigated the program of
replication from origins initiating in early S phase by labeling synchronized normal human
fibroblasts (NHF1) with nucleotide analogs for various pulse times and measuring labeled
tracks in combed DNA fibers. Our analysis showed that replication forks progress 9-35 …
During the S phase of the cell cycle, the entire genome is replicated. There is a high level of orderliness to this process through the temporally and topologically coordinated activation of many replication origins situated along chromosomes. We investigated the program of replication from origins initiating in early S phase by labeling synchronized normal human fibroblasts (NHF1) with nucleotide analogs for various pulse times and measuring labeled tracks in combed DNA fibers. Our analysis showed that replication forks progress 9-35 kilobases from newly initiated origins, followed by a pause in synthesis before replication resumes. Pausing was not observed near origins that initiated in the middle of S phase. No evidence for pausing near origins was found at the beginning of the S phase in glioblastoma T98G cells. Treatment with the S phase checkpoint inhibitor caffeine abrogated pausing in NHF1 cells in early S phase. This suggests that pausing may comprise a novel aspect of the intra-S phase checkpoint pathway or a related new early S checkpoint. Further, it is possible that the loss of this regulatory process in cancer cells such as T98G could be a contributing factor in the genetic instability that typifies cancers.
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