Almouzni G, Méchali M
Institut Jacques Monod, CNRS-Tour 43, Paris, France.
EMBO J. 1988 Mar;7(3):665-72. doi: 10.1002/j.1460-2075.1988.tb02861.x.
A cell-free system from Xenopus eggs mimics the reaction occurring at the eukaryotic replicative fork in vivo when chromatin assembly is coupled to complementary strand synthesis of DNA. DNA synthesis on single-stranded circular DNA promotes supercoiling and the replicated molecule sediments as a discrete nucleoprotein complex. Micrococcal nuclease digestion reveals a characteristic pattern of multiples of 200 bp of DNA. The kinetics of chromatin assembly and DNA synthesis are coincident and both processes occur with a rate comparable with chromosomal replication in vivo in early embryos. The DNA synthesis reaction can be uncoupled from the assembly reaction. Thus, titration of chromatin proteins by preincubation of the extract with double-stranded DNA prevents the supercoiling of replicated DNA without affecting the rate of synthesis. In contrast, chromatin assembly performed on unreplicated double-stranded DNA is a slower process as compared with the assembly coupled to DNA synthesis. Supercoiled molecules are detected after 30 min replication whereas at least 2 h are required to observe the first form I DNA with unreplicated double-stranded DNA. Such a system where chromatin assembly is promoted by DNA synthesis should be valuable for studying the interaction of specific factors with DNA during chromatin assembly at the replicative fork.
非洲爪蟾卵的无细胞体系模拟了体内真核生物复制叉处发生的反应,此时染色质组装与DNA互补链合成相偶联。单链环状DNA上的DNA合成促进超螺旋形成,复制后的分子以离散的核蛋白复合物形式沉降。微球菌核酸酶消化揭示了200 bp倍数的特征性DNA模式。染色质组装和DNA合成的动力学是一致的,这两个过程的发生速率与早期胚胎体内的染色体复制相当。DNA合成反应可以与组装反应解偶联。因此,通过用双链DNA预孵育提取物来滴定染色质蛋白,可防止复制DNA的超螺旋形成,而不影响合成速率。相比之下,与DNA合成偶联的组装相比,在未复制的双链DNA上进行的染色质组装是一个较慢的过程。复制30分钟后可检测到超螺旋分子,而观察到未复制双链DNA形成的第一种I型DNA至少需要2小时。这样一个由DNA合成促进染色质组装的体系,对于研究复制叉处染色质组装过程中特定因子与DNA的相互作用应该是有价值的。