Institute of Animal Genetics and Breeding, College of Animal Science and Technology, Sichuan Agricultural University, Chengdu, 611130, China.
BMC Genomics. 2022 Jul 17;23(1):519. doi: 10.1186/s12864-022-08737-9.
Skeletal muscles consist of fibers of differing contractility and metabolic properties, which are primarily determined by the content of myosin heavy chain (MYH) isoforms (MYH7, MYH2, MYH1, and MYH4). The regulation of Myh genes transcription depends on three-dimensional chromatin conformation interaction, but the mechanistic details remain to be determined.
In this study, we characterized the interaction profiles of Myh genes using 4C-seq (circular chromosome conformation capture coupled to high-throughput sequencing). The interaction profile of Myh genes changed between fast quadriceps and slow soleus muscles. Combining chromatin immunoprecipitation-sequencing (ChIP-seq) and transposase accessible chromatin with high-throughput sequencing (ATAC-seq), we found that a 38 kb intergenic region interacting simultaneously with fast Myh genes promoters controlled the coordinated expression of fast Myh genes. We also identified four active enhancers of Myh7, and revealed that binding of MYOG and MYOD increased the activity of Myh7 enhancers.
This study provides new insight into the chromatin interactions that regulate Myh genes expression.
骨骼肌由收缩性和代谢特性不同的纤维组成,这些特性主要由肌球蛋白重链(MYH)同工型(MYH7、MYH2、MYH1 和 MYH4)的含量决定。Myh 基因转录的调节依赖于三维染色质构象相互作用,但机制细节仍有待确定。
在这项研究中,我们使用 4C-seq(环状染色体构象捕获与高通量测序相结合)对 Myh 基因的相互作用图谱进行了表征。Myh 基因的相互作用图谱在快速四头肌和慢速比目鱼肌之间发生了变化。结合染色质免疫沉淀测序(ChIP-seq)和转座酶可及染色质与高通量测序(ATAC-seq),我们发现一个与快速 Myh 基因启动子同时相互作用的 38kb 基因间区域控制着快速 Myh 基因的协调表达。我们还鉴定了四个 Myh7 的活性增强子,并揭示了 MYOG 和 MYOD 的结合增加了 Myh7 增强子的活性。
本研究为调节 Myh 基因表达的染色质相互作用提供了新的见解。