Skjølberg Henriette C, Fensgård Oyvind, Nilsen Hilde, Grallert Beáta, Boye Erik
Department of Cell Biology, Institute for Cancer Research, Oslo University Hospital, Radiumhospitalet, Montebello, 0310 Oslo, Norway.
BMC Cell Biol. 2009 Dec 16;10:87. doi: 10.1186/1471-2121-10-87.
In many cell types, including the fission yeast Schizosaccharomyces pombe, a set of checkpoints are induced by perturbations of the cell cycle or by DNA damage. Many of the checkpoint responses include a substantial change of the transcriptional pattern. As part of characterising a novel G1/S checkpoint in fission yeast we have investigated whether a transcriptional response is induced after irradiation with ultraviolet light.
Microarray analyses were used to measure the global transcription levels of all open reading frames of fission yeast after 254 nm ultraviolet irradiation, which is known to induce a G1/S checkpoint. We discovered a surprisingly weak transcriptional response, which is quite unlike the marked changes detected after some other types of treatment and in several other checkpoints. Interestingly, the alterations in gene expression after ultraviolet irradiation were not similar to those observed after ionising radiation or oxidative stress. Pathway analysis suggests that there is little systematic transcriptional response to the irradiation by ultraviolet light, but a marked, coordinated transcriptional response was noted on progression of the cells from G1 to S phase.
There is little response in fission yeast to ultraviolet light at the transcriptional level. Amongst the genes induced or repressed after ultraviolet irradiation we found none that are likely to be involved in the G1/S checkpoint mechanism, suggesting that the checkpoint is not dependent upon transcriptional regulation.
在许多细胞类型中,包括裂殖酵母粟酒裂殖酵母,一组检查点会由细胞周期扰动或DNA损伤诱导产生。许多检查点反应包括转录模式的显著变化。作为表征裂殖酵母中一种新型G1/S检查点的一部分,我们研究了紫外线照射后是否会诱导转录反应。
微阵列分析用于测量254 nm紫外线照射后裂殖酵母所有开放阅读框的整体转录水平,已知这种照射会诱导G1/S检查点。我们发现了一个惊人的微弱转录反应,这与其他一些类型的处理后以及其他几个检查点中检测到的显著变化截然不同。有趣的是,紫外线照射后基因表达的变化与电离辐射或氧化应激后观察到的变化不同。通路分析表明,对紫外线照射几乎没有系统性的转录反应,但在细胞从G1期进入S期的过程中观察到了显著的、协调的转录反应。
裂殖酵母在转录水平对紫外线几乎没有反应。在紫外线照射后诱导或抑制的基因中,我们没有发现任何可能参与G1/S检查点机制的基因,这表明该检查点不依赖于转录调控。