Division of RI Laboratory, Biomedical Research Center, Faculty of Medicine, Saitama Medical University, Moroyama-machi, Saitama, Japan.
Biosci Biotechnol Biochem. 2024 Oct 22;88(11):1270-1278. doi: 10.1093/bbb/zbae109.
During DNA replication, core histones that form nucleosomes on template strands are evicted and associate with newly synthesized strands to reform nucleosomes. Mcm2, a subunit of the Mcm2-7 complex, which is a core component of the replicative helicase, interacts with histones in the amino-terminal region (Mcm2N) and is involved in the parental histone recycling to lagging strands. Herein, the interaction of Mcm2N with histones was biochemically analyzed to reveal the molecular mechanisms underlying histone recycling by Mcm2N. With the addition of Mcm2N, a histone hexamer, comprising an H3-H4 tetramer and an H2A-H2B dimer, was excised from the histone octamer to form a complex with Mcm2N. The histone hexamer, but not H3-H4 tetramer was released from Mcm2N in the presence of Nap1, a histone chaperone. FACT, another histone chaperone, stabilized Mcm2N-histone hexamer complex to protect from Nap1-dependent dissociation. This study indicates cooperative histone transfer via Mcm2N and histone chaperones.
在 DNA 复制过程中,形成模板链核小体的核心组蛋白被驱逐并与新合成的链结合,重新形成核小体。Mcm2 是 Mcm2-7 复合物的一个亚基,是复制解旋酶的核心组成部分,与组蛋白的氨基末端区域(Mcm2N)相互作用,并参与滞后链上亲本组蛋白的回收。在此,通过生化分析研究了 Mcm2N 与组蛋白的相互作用,以揭示 Mcm2N 介导组蛋白回收的分子机制。随着 Mcm2N 的加入,一个由 H3-H4 四聚体和 H2A-H2B 二聚体组成的组蛋白六聚体从组蛋白八聚体中被切除,形成与 Mcm2N 的复合物。组蛋白六聚体,但不是 H3-H4 四聚体,在组蛋白伴侣 Nap1 的存在下从 Mcm2N 中释放出来。另一个组蛋白伴侣 FACT 稳定了 Mcm2N-组蛋白六聚体复合物,以防止其依赖于 Nap1 的解离。这项研究表明,通过 Mcm2N 和组蛋白伴侣的协同作用进行组蛋白转移。