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多头绒泡菌在复制应激时复制叉高频逆转。

Replication forks reverse at high frequency upon replication stress in Physarum polycephalum.

作者信息

Maric Chrystelle, Bénard Marianne

机构信息

Institut Jacques Monod, UMR 7592 CNRS-Université Paris Diderot-Paris7, 15 Rue Hélène Brion, 75205, Paris CEDEX 13, France,

出版信息

Chromosoma. 2014 Dec;123(6):577-85. doi: 10.1007/s00412-014-0471-z. Epub 2014 Jun 21.

Abstract

The addition of hydroxyurea after the onset of S phase allows replication to start and permits the successive detecting of replication-dependent joint DNA molecules and chicken foot structures in the synchronous nuclei of Physarum polycephalum. We find evidence for a very high frequency of reversed replication forks upon replication stress. The formation of these reversed forks is dependent on the presence of joint DNA molecules, the impediment of the replication fork progression by hydroxyurea, and likely on the propensity of some replication origins to reinitiate replication to counteract the action of this compound. As hydroxyurea treatment enables us to successively detect the appearance of joint DNA molecules and then of reversed replication forks, we propose that chicken foot structures are formed both from the regression of hydroxyurea-frozen joint DNA molecules and from hydroxyurea-stalled replication forks. These experiments underscore the transient nature of replication fork regression, which becomes detectable due to the hydroxyurea-induced slowing down of replication fork progression.

摘要

在S期开始后添加羟基脲可使复制启动,并能在多头绒泡菌的同步细胞核中相继检测到依赖复制的连接DNA分子和鸡爪结构。我们发现了复制应激时反向复制叉频率极高的证据。这些反向叉的形成取决于连接DNA分子的存在、羟基脲对复制叉进展的阻碍,还可能取决于一些复制起点重新启动复制以抵消该化合物作用的倾向。由于羟基脲处理使我们能够相继检测到连接DNA分子的出现,然后是反向复制叉的出现,我们提出鸡爪结构是由羟基脲冻结的连接DNA分子的退行以及羟基脲停滞的复制叉形成的。这些实验强调了复制叉退行的短暂性质,由于羟基脲诱导的复制叉进展减慢,这种性质变得可检测到。

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