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PCNA 稳定性对突变形成的影响。

Effects of PCNA Stability on the Formation of Mutations.

机构信息

The Shmunis School of Biomedicine & Cancer Research, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Ramat Aviv 69978, Israel.

出版信息

Int J Mol Sci. 2024 Aug 8;25(16):8646. doi: 10.3390/ijms25168646.

Abstract

The fidelity of replication, especially in the presence of DNA damage, is essential for the proper function of cells. Mutations that inactivate genes involved in DNA damage repair or bypass are enriched in several types of cancer cells. Thus, it is important to further our understanding of the mechanisms governing replication fidelity. PCNA is a ring-shaped complex that encircles DNA at the front of the replication fork, at the double-stranded/single-stranded DNA junction. It serves as a processivity factor for the different DNA replication polymerases, allowing them to replicate longer stretches of DNA by physically tethering them to the DNA and preventing their detachment. In addition, PCNA also regulates and coordinates different DNA damage bypass pathways meant to allow DNA replication in the presence of DNA damage. Due to its essentiality and the numerous functions it has in the cell, much is still unclear about PCNA. Here, we utilize PCNA mutants that lower the stability of the PCNA complex on the chromatin, and thus tend to disassociate and fall from the DNA. Using these mutants, we show that PCNA's physical presence on the DNA can prevent DNA misalignment at repetitive sequences, leading to increased mutation formation. We also show that PCNA-interacting proteins play an important role in strengthening the ring's stability on the chromatin. Such repetitive sequence-induced mutations are common in several human diseases and it is important to study their formation and the mechanisms guarding against them.

摘要

复制的保真度,特别是在存在 DNA 损伤的情况下,对于细胞的正常功能至关重要。失活参与 DNA 损伤修复或绕过的基因的突变在几种类型的癌细胞中富集。因此,深入了解控制复制保真度的机制非常重要。PCNA 是一种环形复合物,位于复制叉的前端,在双链/单链 DNA 连接处环绕 DNA。它作为不同 DNA 复制聚合酶的延伸因子,通过将它们物理连接到 DNA 上并防止它们脱离,使它们能够复制更长的 DNA 片段。此外,PCNA 还调节和协调不同的 DNA 损伤绕过途径,旨在允许在存在 DNA 损伤的情况下进行 DNA 复制。由于其重要性和它在细胞中具有的众多功能,PCNA 的许多方面仍不清楚。在这里,我们利用 PCNA 突变体降低染色质上 PCNA 复合物的稳定性,从而促使其解聚并从 DNA 上脱落。利用这些突变体,我们表明 PCNA 在 DNA 上的物理存在可以防止重复序列处的 DNA 错位,从而导致突变形成增加。我们还表明,PCNA 相互作用蛋白在增强染色质上环的稳定性方面发挥重要作用。这种由重复序列诱导的突变在几种人类疾病中很常见,研究它们的形成和保护它们的机制非常重要。

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