Laboratory of Genetics and Genomics, National Institute on Aging, Intramural Research Program, National Institutes of Health, Baltimore, MD 21224, USA.
Nucleic Acids Res. 2023 Mar 21;51(5):2415-2433. doi: 10.1093/nar/gkad086.
Topoisomerases are required to release topological stress generated by RNA polymerase II (RNAPII) during transcription. Here, we show that in response to starvation, the complex of topoisomerase 3b (TOP3B) and TDRD3 can enhance not only transcriptional activation, but also repression, which mimics other topoisomerases that can also alter transcription in both directions. The genes enhanced by TOP3B-TDRD3 are enriched with long and highly-expressed ones, which are also preferentially stimulated by other topoisomerases, suggesting that different topoisomerases may recognize their targets through a similar mechanism. Specifically, human HCT116 cells individually inactivated for TOP3B, TDRD3 or TOP3B topoisomerase activity, exhibit similarly disrupted transcription for both starvation-activated genes (SAGs) and starvation-repressed genes (SRGs). Responding to starvation, both TOP3B-TDRD3 and the elongating form of RNAPII exhibit concomitantly increased binding to TOP3B-dependent SAGs, at binding sites that overlap. Notably, TOP3B inactivation decreases the binding of elongating RNAPII to TOP3B-dependent SAGs while increased it to SRGs. Furthermore, TOP3B-ablated cells display reduced transcription of several autophagy-associated genes and autophagy per se. Our data suggest that TOP3B-TDRD3 can promote both transcriptional activation and repression by regulating RNAPII distribution. In addition, the findings that it can facilitate autophagy may account for the shortened lifespan of Top3b-KO mice.
拓扑异构酶是 RNA 聚合酶 II(RNAPII)转录过程中释放拓扑结构应力所必需的。在这里,我们发现,在饥饿的情况下,拓扑异构酶 3b(TOP3B)和 TDRD3 的复合物不仅可以增强转录激活,还可以增强转录抑制,这与其他可以双向改变转录的拓扑异构酶类似。TOP3B-TDRD3 增强的基因富含长且高表达的基因,这些基因也被其他拓扑异构酶优先刺激,这表明不同的拓扑异构酶可能通过类似的机制识别其靶标。具体来说,人 HCT116 细胞分别失活 TOP3B、TDRD3 或 TOP3B 拓扑异构酶活性,对饥饿激活基因 (SAGs) 和饥饿抑制基因 (SRGs) 的转录均表现出类似的破坏。对饥饿的反应,TOP3B-TDRD3 和延伸形式的 RNAPII 都表现出与 TOP3B 依赖性 SAG 同时增加的结合,结合位点重叠。值得注意的是,TOP3B 失活会减少延伸的 RNAPII 与 TOP3B 依赖性 SAG 的结合,而增加与 SRG 的结合。此外,TOP3B 缺失的细胞显示几种自噬相关基因和自噬本身的转录减少。我们的数据表明,TOP3B-TDRD3 可以通过调节 RNAPII 分布来促进转录激活和抑制。此外,它可以促进自噬的发现可能解释了 Top3b-KO 小鼠寿命缩短的原因。