Taniura Hideo, Soeda Shuhei, Ohta Tomoko, Oki Maya, Tsuboi Risako
Laboratory of Neurochemistry, College of Pharmacy, Ritsumeikan University, Shiga, Japan.
Heliyon. 2019 Mar 7;5(3):e01301. doi: 10.1016/j.heliyon.2019.e01301. eCollection 2019 Mar.
Sirtuin interacts with many regulatory proteins involved in energy homeostasis, DNA repair, cell survival, and lifespan extension. We investigated the functional roles of Sir2D during early development upon starvation. We found that ectopic expression of Sir2D accelerated development among three Sirtuins containing highly homologous catalytic domain sequences to mouse Sirt1. Sir2D expression upregulated adenylate cyclase A (aca) mRNA expression 2, 4 and 6 h after starvation. We have previously reported that nicotinamide, a Sirt1 inhibitor, treatment delayed the development and decreased the expression of aca at 4 h after starvation. Sir2D expressing cells showed resistance against the nicotinamide effect. RNAi-mediated Sir2D knockdown cells were generated, and their development was also delayed. Aca expression was decreased 4 h after starvation. Sir2D expression restored the developmental impairment of Sir2D knockdown cells. The induction of aca upon starvation starts with transcriptional activation of MybB. The ectopic expression of MybB accelerated the development and increased the expression of aca 2 and 4 h after starvation but did not restore the phenotype of Sir2D knockdown cells. Sir2D expression had no effects on MybB-null mutant cells during early development. Thus, MybB is necessary for the upregulation of aca by Sir2D, and Sir2D is necessary for the full induction of aca after 4 h by MybB. MybB was coimmunoprecipitated with Sir2D, suggesting an interaction between MybB and Sir2D. These results suggest that Sir2D regulates aca expression through interaction with the MybB transcription factor early in development upon starvation.
沉默调节蛋白与许多参与能量平衡、DNA修复、细胞存活和寿命延长的调节蛋白相互作用。我们研究了Sir2D在饥饿早期发育过程中的功能作用。我们发现,在含有与小鼠Sirt1高度同源催化结构域序列的三种沉默调节蛋白中,Sir2D的异位表达加速了发育。饥饿后2、4和6小时,Sir2D的表达上调了腺苷酸环化酶A(aca)的mRNA表达。我们之前报道过,烟酰胺是一种Sirt1抑制剂,在饥饿后4小时处理会延迟发育并降低aca的表达。表达Sir2D的细胞对烟酰胺的作用具有抗性。我们构建了RNAi介导的Sir2D敲低细胞,其发育也延迟了。饥饿后4小时,Aca表达降低。Sir2D的表达恢复了Sir2D敲低细胞的发育损伤。饥饿时aca的诱导始于MybB的转录激活。MybB的异位表达加速了发育,并在饥饿后2和4小时增加了aca的表达,但没有恢复Sir2D敲低细胞的表型。在早期发育过程中,Sir2D的表达对MybB基因敲除突变细胞没有影响。因此,MybB是Sir2D上调aca所必需的,而Sir2D是MybB在4小时后完全诱导aca所必需的。MybB与Sir2D进行了共免疫沉淀,表明MybB与Sir2D之间存在相互作用。这些结果表明,在饥饿早期发育过程中,Sir2D通过与MybB转录因子相互作用来调节aca的表达。