Thakur Bhushan L, Redon Christophe E, Fu Haiqing, Sebastian Robin, Kusi Nana A, Zhuang Sophie Z, Pongor Lorinc S, Bohr Vilhelm A, Aladjem Mirit I
Developmental Therapeutics Branch, Center for Cancer Research, NCI, NIH, Maryland, MD, USA.
Cancer Genomics and Epigenetics Research Group, HCEMM, Szeged, Hungary.
Nat Commun. 2025 May 3;16(1):4140. doi: 10.1038/s41467-025-59509-4.
DNA synthesis in metazoans initiates within a select group of replication origins (baseline origins), whereas other (dormant) origins do not initiate replication despite recruiting apparently indistinguishable pre-replication complexes. Dormant origins are activated as backups when DNA synthesis stalls, allowing for complete genome duplication, yet it is unclear how cells selectively differentiate between baseline and dormant origins. We report here that during unperturbed cell proliferation, dormant origins selectively bind phosphorylated RecQL4 (pRecQL4), a member of the RecQ helicase family mutated in Rothmund-Thomson, RAPADILINO and Baller-Gerold syndromes. Origin-bound pRecQL4 prevents the binding of an essential replication initiation complex, MTBP-TICRR/TRESLIN, to dormant origins, thus restricting replication initiation to baseline origins. When cells encounter replication stress, pRecQL4 is required for the dissociation of the MTBP-TICRR/TRESLIN complex from chromatin, which, in turn, facilitates the subsequent redistribution of MTBP-TICRR/TRESLIN to both baseline and dormant origins and allows recovery from replication inhibition. Thus, the interactions between the MTBP-TICRR/TRESLIN complex and pRecQL4 at replication origins are critical for replication origin choice and facilitate recovery from replication stress.
后生动物中的DNA合成在一组特定的复制起点(基线起点)内启动,而其他(休眠)起点尽管招募了明显难以区分的复制前复合体,却不会启动复制。当DNA合成停滞时,休眠起点作为备用被激活,以确保基因组完全复制,但目前尚不清楚细胞如何在基线起点和休眠起点之间进行选择性区分。我们在此报告,在正常的细胞增殖过程中,休眠起点选择性地结合磷酸化的RecQL4(pRecQL4),RecQL4是RecQ解旋酶家族的成员,在罗思蒙德-汤姆森综合征、RAPADILINO综合征和巴勒-杰罗尔德综合征中发生突变。与起点结合的pRecQL4可阻止必需的复制起始复合体MTBP-TICRR/TRESLIN与休眠起点结合,从而将复制起始限制在基线起点。当细胞遇到复制压力时,pRecQL4是MTBP-TICRR/TRESLIN复合体从染色质上解离所必需的,这反过来又促进了MTBP-TICRR/TRESLIN随后重新分布到基线起点和休眠起点,并使细胞从复制抑制中恢复。因此,MTBP-TICRR/TRESLIN复合体与pRecQL4在复制起点处的相互作用对于复制起点的选择至关重要,并有助于从复制压力中恢复。