Laboratory of Pathology, National Cancer Institute, Bethesda, MD 20814, USA.
Department of Cell and Molecular Biology, Karolinska Institutet, 17177 Stockholm, Sweden.
Mol Cell. 2022 Jan 6;82(1):140-158.e12. doi: 10.1016/j.molcel.2021.11.016. Epub 2021 Dec 9.
High-intensity transcription and replication supercoil DNA to levels that can impede or halt these processes. As a potent transcription amplifier and replication accelerator, the proto-oncogene MYC must manage this interfering torsional stress. By comparing gene expression with the recruitment of topoisomerases and MYC to promoters, we surmised a direct association of MYC with topoisomerase 1 (TOP1) and TOP2 that was confirmed in vitro and in cells. Beyond recruiting topoisomerases, MYC directly stimulates their activities. We identify a MYC-nucleated "topoisome" complex that unites TOP1 and TOP2 and increases their levels and activities at promoters, gene bodies, and enhancers. Whether TOP2A or TOP2B is included in the topoisome is dictated by the presence of MYC versus MYCN, respectively. Thus, in vitro and in cells, MYC assembles tools that simplify DNA topology and promote genome function under high output conditions.
高强度转录和复制会导致 DNA 超螺旋达到阻碍或停止这些过程的水平。原癌基因 MYC 作为一种有效的转录放大器和复制加速器,必须应对这种干扰的扭转力。通过比较基因表达与拓扑异构酶和 MYC 募集到启动子的情况,我们推测 MYC 与拓扑异构酶 1(TOP1)和 TOP2 之间存在直接关联,这一关联在体外和细胞中得到了证实。除了招募拓扑异构酶外,MYC 还直接刺激它们的活性。我们发现了一个由 MYC 引发的“拓扑酶体”复合物,它将 TOP1 和 TOP2 结合在一起,并增加它们在启动子、基因体和增强子上的水平和活性。TOP2A 或 TOP2B 是否包含在拓扑酶体中取决于 MYC 与 MYCN 的存在,分别。因此,无论是在体外还是在细胞中,MYC 都会组装工具,简化 DNA 拓扑结构,并在高输出条件下促进基因组功能。