Hanna Michelle, Ball Lindsay G, Tong Amy H, Boone Charles, Xiao Wei
Department of Microbiology and Immunology, University of Saskatchewan, 107 Wiggins Road, Saskatoon, Sask., Canada.
Mutat Res. 2007 Dec 1;625(1-2):164-76. doi: 10.1016/j.mrfmmm.2007.06.008. Epub 2007 Jun 28.
POL32 encodes a non-essential subunit of Poldelta and plays a role in Poldelta processivity and DNA repair. In order to understand how Pol32 is involved in these processes, we performed extensive genetic analysis and demonstrated that POL32 is required for Polzeta-mediated translesion synthesis, but not for Poleta-mediated activity. Unlike Polzeta, inactivation of Pol32 does not result in decreased spontaneous mutagenesis, nor does it limit genome instability in the absence of the error-free postreplication repair pathway. In contrast, inactivation of Pol32 results in an increased rate of replication slippage and recombination. A genome-wide synthetic lethal screen revealed that in the absence of Pol32, homologous recombination repair and cell cycle checkpoints play crucial roles in maintaining cell survival and growth. These results are consistent with a model in which Pol32 functions as a coupling factor to facilitate a switch from replication to translesion synthesis when Poldelta encounters replication-blocking lesions. When Pol32 is absent, the S-phase checkpoint complex Mrc1-Tof1 becomes crucial to stabilize the stalled replication fork and recruit Top3 and Sgs1. Lack of any of the above activities will cause double strand breaks at or near the replication fork that require recombination as well as Rad9 for cell survival.
POL32编码DNA聚合酶δ(Poldelta)的一个非必需亚基,并在Poldelta的持续合成能力和DNA修复中发挥作用。为了了解Pol32如何参与这些过程,我们进行了广泛的遗传学分析,并证明Pol32是Polζ介导的跨损伤合成所必需的,但不是Polη介导的活性所必需的。与Polζ不同,Pol32的失活不会导致自发突变率降低,在没有无差错的复制后修复途径的情况下,也不会限制基因组不稳定性。相反,Pol32的失活导致复制滑移和重组率增加。全基因组合成致死筛选表明,在没有Pol32的情况下,同源重组修复和细胞周期检查点在维持细胞存活和生长中起关键作用。这些结果与一个模型一致,即当Poldelta遇到复制阻断损伤时,Pol32作为一个偶联因子发挥作用,促进从复制到跨损伤合成的转换。当没有Pol32时,S期检查点复合物Mrc1-Tof1对于稳定停滞的复制叉并募集Top3和Sgs1至关重要。缺乏上述任何一种活性都会导致复制叉处或其附近的双链断裂,这需要重组以及Rad9来维持细胞存活。
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