目的构建信号传导与转录激活因子3(signal transducer and activator of transcription factor 3,STAT3)二聚化抑制剂筛选模型,为STAT3抑制剂筛选提供实验方法。方法分别构建pECFP-N1-STAT3和pEYFP-N1-STAT3的荧光报告载体,利用脂质体...目的构建信号传导与转录激活因子3(signal transducer and activator of transcription factor 3,STAT3)二聚化抑制剂筛选模型,为STAT3抑制剂筛选提供实验方法。方法分别构建pECFP-N1-STAT3和pEYFP-N1-STAT3的荧光报告载体,利用脂质体转染技术将二者共转入HEK-293T细胞,利用ECFP和EYFP 2种荧光蛋白之间能量共振转移,检测磷酸化STAT3分子的二聚化水平,并检测Stattic对二聚化的影响。结果成功构建了pECFP-N1-STAT3和pEYFP-N1-STAT3的荧光报告载体。将2种荧光报告载体共转染HEK-293T细胞后,Western Blot检测结果显示STAT3以及p-STAT3的表达水平明显增加。以458nm波长激发ECFP,其发射波长可激发EYFP。加入STAT3二聚化抑制剂Stattic后,荧光强度降低,且呈现一定的剂量依赖性。结论基于荧光共振能量转移技术的STAT3二聚化抑制剂筛选模型构建成功。展开更多
Willed-movement training has been demonstrated to be a promising approach to increase motor per- formance and neural plasticity in ischemic rats. However, little is known regarding the molecular signals that are in- v...Willed-movement training has been demonstrated to be a promising approach to increase motor per- formance and neural plasticity in ischemic rats. However, little is known regarding the molecular signals that are in- volved in neural plasticity following willed-movement training. To investigate the potential signals related to neural plasticity following willed-movement training, littermate rats were randomly assigned into three groups: middle cerebral artery occlusion, environmental modification, and willed-movement training. The infarct volume was measured 18 d after occlusion of the right middle cerebral artery. Reverse transcription-polymerase chain reaction (PCR) and im- munofluorescence staining were used to detect the changes in the signal transducer and activator of transcription 3 (STAT3) mRNA and protein, respectively. A chromatin immunoprecipitation was used to investigate whether STAT3 bound to plasticity-related genes, such as brain-derived neurotrophic factor (BDNF), synaptophysin, and protein in- teracting with C kinase 1 (PICK1). In this study, we demonstrated that STAT3 mRNA and protein were markedly increased following 15-d willed-movement training in the ischemic hemispheres of the treated rats. STAT3 bound to BDNF, PICK1, and synaptophysin promoters in the neocortical cells of rats. These data suggest that the increased STAT3 levels after willed-movement training might play critical roles in the neural plasticity by directly regulating plasticity-related genes.展开更多
文摘目的构建信号传导与转录激活因子3(signal transducer and activator of transcription factor 3,STAT3)二聚化抑制剂筛选模型,为STAT3抑制剂筛选提供实验方法。方法分别构建pECFP-N1-STAT3和pEYFP-N1-STAT3的荧光报告载体,利用脂质体转染技术将二者共转入HEK-293T细胞,利用ECFP和EYFP 2种荧光蛋白之间能量共振转移,检测磷酸化STAT3分子的二聚化水平,并检测Stattic对二聚化的影响。结果成功构建了pECFP-N1-STAT3和pEYFP-N1-STAT3的荧光报告载体。将2种荧光报告载体共转染HEK-293T细胞后,Western Blot检测结果显示STAT3以及p-STAT3的表达水平明显增加。以458nm波长激发ECFP,其发射波长可激发EYFP。加入STAT3二聚化抑制剂Stattic后,荧光强度降低,且呈现一定的剂量依赖性。结论基于荧光共振能量转移技术的STAT3二聚化抑制剂筛选模型构建成功。
基金Project supported by the National Natural Science Foundation of China(Nos.30973167,81472160,and 81173595)the China Postdoctoral Science Foundation(Nos.2011M501301 and 2012T50711)the China-Japan Friendship Hospital Youth Science and Technology Excellence Project(No.2014-QNYC-A-04)
文摘Willed-movement training has been demonstrated to be a promising approach to increase motor per- formance and neural plasticity in ischemic rats. However, little is known regarding the molecular signals that are in- volved in neural plasticity following willed-movement training. To investigate the potential signals related to neural plasticity following willed-movement training, littermate rats were randomly assigned into three groups: middle cerebral artery occlusion, environmental modification, and willed-movement training. The infarct volume was measured 18 d after occlusion of the right middle cerebral artery. Reverse transcription-polymerase chain reaction (PCR) and im- munofluorescence staining were used to detect the changes in the signal transducer and activator of transcription 3 (STAT3) mRNA and protein, respectively. A chromatin immunoprecipitation was used to investigate whether STAT3 bound to plasticity-related genes, such as brain-derived neurotrophic factor (BDNF), synaptophysin, and protein in- teracting with C kinase 1 (PICK1). In this study, we demonstrated that STAT3 mRNA and protein were markedly increased following 15-d willed-movement training in the ischemic hemispheres of the treated rats. STAT3 bound to BDNF, PICK1, and synaptophysin promoters in the neocortical cells of rats. These data suggest that the increased STAT3 levels after willed-movement training might play critical roles in the neural plasticity by directly regulating plasticity-related genes.