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Advances in understanding DNA processing and protection at stalled replication forks

机译:在停滞的复制叉中了解DNA加工和保护的进展

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摘要

The replisome, the molecular machine dedicated to copying DNA, encounters a variety of obstacles during S phase. Without a proper response to this replication stress, the genome becomes unstable, leading to disease, including cancer. The immediate response is localized to the stalled replisome and includes protection of the nascent DNA. A number of recent studies have provided insight into the factors recruited to and responsible for protecting stalled replication forks. In response to replication stress, the SNF2 family of DNA translocases has emerged as being responsible for remodeling replication forks in vivo. The protection of stalled replication forks requires the cooperation of RAD51, BRCA1, BRCA2, and many other DNA damage response proteins. In the absence of these fork protection factors, fork remodeling renders them vulnerable to degradation by nucleases and helicases, ultimately compromising genome integrity. In this review, we focus on the recent progress in understanding the protection, processing, and remodeling of stalled replication forks in mammalian cells.
机译:复制体是专门用于复制DNA的分子机器,在S期遇到各种障碍。如果对这种复制压力没有适当的反应,则基因组会变得不稳定,从而导致疾病,包括癌症。立即反应局限于停滞的复制体,包括新生DNA的保护。最近的许多研究提供了有关招募和负责保护停滞的复制叉的因素的见解。为了应对复制压力,SNF2 DNA转位酶家族已出现,可在体内重塑复制叉。保护停滞的复制叉需要RAD51,BRCA1,BRCA2和许多其他DNA损伤反应蛋白的配合。在没有这些叉保护因子的情况下,叉重塑使其易受核酸酶和解旋酶降解,最终损害基因组完整性。在这篇综述中,我们关注于了解哺乳动物细胞中停滞的复制叉的保护,加工和重塑的最新进展。

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