Liu Shide, Cheng Caixia, Lin Ziyang, Zhang Jianhua, Li Minghua, Zhou Zhuolong, Tian Shengli, Xing Miao
Shenzhen Key Laboratory of Microbial and Genetic Engineering, College of Life Sciences, Shenzhen University, Shenzhen 518060, China.
Sheng Wu Gong Cheng Xue Bao. 2009 Jun;25(6):854-62.
The plasmodium of Physarum polycephalum is a suitable eukaryotic cell for cell cycle investigation, but there is no compatible transient expression system for the plasmodium. Using the promoter and terminator of ardC actin of Physarum polycephalum substituted the CMV IE and SV40 polyA of plasmid pDsRedl-N1, using cassette PardC-MCS-DsRed1-TardC substituted the cassette PardC-hph-TardC of plasmid pTB38, we constructed plasmids pXM1 and pXM2 for transient expression of red fluorescent protein (RFP) in Physarum polycephalum respectively. After reconstituting the transcription elongation factor homologous gene (pelf1) of Physarum polycephalum into the pXM2, we generated a plasmid pXM2-pelf1. After the plasmid pXM1, pXM2 and pXM2-pelf1 were electroporated into the plasmodium of Physarum polycephalum, we observed optimum RFP and PELF1-RFP expression under fluoroscope and confocal microscope between 24-48 h after electroporation, and found that ELF1-RFP expression was accumulated in nucleus of microplasmodium, the optimum electroporation parameters were 40 V/cm electric field, 1 ampere current, and 70 micros electric shock time. The results suggest that this expression system is qualified for transient expression of specific protein in plasmodium of Physarum polycephalum.
多头绒泡菌的原质团是用于细胞周期研究的合适真核细胞,但对于原质团而言不存在合适的瞬时表达系统。利用多头绒泡菌ardC肌动蛋白的启动子和终止子替换质粒pDsRedl-N1的CMV IE和SV40 polyA,用盒式结构PardC-MCS-DsRed1-TardC替换质粒pTB38的盒式结构PardC-hph-TardC,我们分别构建了用于在多头绒泡菌中瞬时表达红色荧光蛋白(RFP)的质粒pXM1和pXM2。将多头绒泡菌的转录延伸因子同源基因(pelf1)重组到pXM2中后,我们得到了质粒pXM2-pelf1。将质粒pXM1、pXM2和pXM2-pelf1电穿孔导入多头绒泡菌的原质团后,我们在电穿孔后24 - 48小时在荧光显微镜和共聚焦显微镜下观察到了最佳的RFP和PELF1-RFP表达,并且发现ELF1-RFP表达在小原质团的细胞核中积累,最佳电穿孔参数为40 V/cm电场、1安培电流和70微秒电击时间。结果表明该表达系统有资格用于在多头绒泡菌原质团中瞬时表达特定蛋白质。