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In vitro chromatin remodelling by chromatin accessibility complex (CHRAC) at the SV40 origin of DNA replication.

机译:在DNA复制的SV40起点通过染色质可及性复合物(CHRAC)进行体外染色质重塑。

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摘要

DNA replication is initiated by binding of initiation factors to the origin of replication. Nucleosomes are known to inhibit the access of the replication machinery to origin sequences. Recently, nucleosome remodelling factors have been identified that increase the accessibility of nucleosomal DNA to transcription regulators. To test whether the initiation of DNA replication from an origin covered by nucleosomes would also benefit from the action of nucleosome remodelling factors, we reconstituted SV40 DNA into chromatin in Drosophila embryo extracts. In the presence of T-antigen and ATP, a chromatin-associated cofactor allowed efficient replication from a nucleosomal origin in vitro. In search of the energy-dependent cofactor responsible we found that purified 'chromatin accessibility complex' (CHRAC) was able to alter the nucleosomal structure at the origin allowing the binding of T-antigen and efficient initiation of replication. These experiments provide evidence for the involvement of a nucleosome remodelling machine in structural changes at the SV40 origin of DNA replication in vitro.
机译:通过复制起始因子与复制起点的结合来起始DNA复制。已知核小体抑制复制机制接近原始序列。最近,已经鉴定出核小体重塑因子,其增加了核小体DNA对转录调节子的可及性。为了测试从核小体覆盖的起点开始的DNA复制是否也将从核小体重塑因子的作用中受益,我们将SV40 DNA重构为果蝇胚胎提取物中的染色质。在T抗原和ATP的存在下,染色质相关的辅因子允许从核小体来源体外高效复制。在寻找负责的能量依赖性辅因子中,我们发现纯化的“染色质可及性复合体”(CHRAC)能够改变起源处的核小体结构,从而允许T抗原结合并有效地启动复制。这些实验提供了核小体重塑机参与体外DNA复制的SV40起源的结构变化的证据。

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