Department of Molecular and Cellular Biology, University of Geneva, 1205, Geneva, Switzerland.
Sci Rep. 2024 Apr 2;14(1):7708. doi: 10.1038/s41598-024-58404-0.
Human RECQL4, a member of the RecQ helicase family, plays a role in maintaining genomic stability, but its precise function remains unclear. The N-terminus of RECQL4 has similarity to Sld2, a protein required for the firing of DNA replication origins in budding yeast. Consistent with this sequence similarity, the Xenopus laevis homolog of RECQL4 has been implicated in initiating DNA replication in egg extracts. To determine whether human RECQL4 is required for firing of DNA replication origins, we generated cells in which both RECQL4 alleles were targeted, resulting in either lack of protein expression (knock-out; KO) or expression of a full-length, mutant protein lacking helicase activity (helicase-dead; HD). Interestingly, both the RECQL4 KO and HD cells were viable and exhibited essentially identical origin firing profiles as the parental cells. Analysis of the rate of fork progression revealed increased rates in the RECQL4 KO cells, which might be indicative of decreased origin firing efficiency. Our results are consistent with human RECQL4 having a less critical role in firing of DNA replication origins, than its budding yeast homolog Sld2.
人类 RECQL4 是 RecQ 解旋酶家族的成员,在维持基因组稳定性方面发挥作用,但它的确切功能尚不清楚。RECQL4 的 N 端与 Sld2 具有相似性,Sld2 是芽殖酵母中 DNA 复制起始所需的蛋白质。与这种序列相似性一致,RECQL4 的非洲爪蟾同源物已被牵连参与卵提取物中的 DNA 复制起始。为了确定人类 RECQL4 是否需要引发 DNA 复制起点,我们生成了两个 RECQL4 等位基因均被靶向的细胞,导致缺乏蛋白质表达(敲除;KO)或表达全长、缺乏解旋酶活性的突变蛋白(解旋酶失活;HD)。有趣的是,RECQ4 KO 和 HD 细胞均具有活力,并且表现出与亲本细胞基本相同的起点发射谱。叉推进率的分析表明,RECQL4 KO 细胞中的速率增加,这可能表明起点发射效率降低。我们的结果表明,人类 RECQL4 在引发 DNA 复制起点方面的作用不如其芽殖酵母同源物 Sld2 重要。