首页> 外文期刊>Neurochemical research >RNA interference-mediated inhibition of wild-type Torsin A expression increases apoptosis caused by oxidative stress in cultured cells.
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RNA interference-mediated inhibition of wild-type Torsin A expression increases apoptosis caused by oxidative stress in cultured cells.

机译:RNA干扰介导的野生型Torsin A表达的抑制作用会增加培养细胞中由氧化应激引起的凋亡。

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To assess RNAi mediated inhibition of the expression of wt-DYT1 on H(2)O(2)-induced toxicity in NIH 3T3 cells and primary cortical neurons. To detect the function of wild-type Torsin A and the effect of SiRNA on the wt-DYT1 gene. The shRNA expression vector was constructed by ligating annealed complementary shRNA oligonucleotides into the down-stream of the human U6 promoter (PU6) of the RNAi-ready pSIREN-Shuttle vector. Then, the pSIREN-Shuttle-DYT1-shRNA cassette was ligated to Adeno-X Viral DNA to construct the recombinant adenoviral vector pAd-DYT1-shRNA. Cultured cerebral cortical neurons and NIH 3T3 cells were transfected with pAd-DYT1-shRNA and pSIREN-Shuttle-DYT1-shRNA. We evaluated NIH 3T3 cells and neurons in the presence of oxidative stress using a TUNEL assay under different conditions. The knockdown efficacy of the DYT1 was confirmed by real-time RT-PCR and Western Blot analysis. After exposure to H(2)O(2,) the quantity of NIH 3T3 cells transfected with pSIREN-Shuttle-DYT1-shRNA, which stained positively in the TUNEL assay, was significantly higher than the cells transfected with pSIREN-Shuttle-negative control-shRNA. (44.85 +/- 1.81% vs. 8.98 +/- 2.73%, t = 26.168). There were significantly more apoptotic neurons infected with pAd-DYT1-shRNA (45.63 +/- 7.53%) than neurons infected with pAd-X-negative control-shRNA (17.33 +/- 2.43%) (t = 9.816). The observed silencing of wild-type Torsin A expression by DYT1-shRNA was sequence-specific. RNAi-mediated inhibition of the expression of wild-type Torsin A increases apoptosis caused by oxidative stress. It is reasonable to consider that wild-type Torsin A has the capacity to protect cortical neurons against oxidative stress, and in the development of DYT1-delta GAG-dystonia the neuroprotective function of wild-type Torsin A may be compromised.
机译:若要评估RNAi介导的抑制HIT(2)O(2)在NIH 3T3细胞和主要皮层神经元中的毒性对wt-DYT1的表达。检测野生型Torsin A的功能以及SiRNA对wt-DYT1基因的影响。通过将退火的互补shRNA寡核苷酸连接到RNAi就绪的pSIREN-Shuttle载体的人U6启动子(PU6)的下游来构建shRNA表达载体。然后,将pSIREN-Shuttle-DYT1-shRNA盒连接至Adeno-X病毒DNA,以构建重组腺病毒载体pAd-DYT1-shRNA。用pAd-DYT1-shRNA和pSIREN-Shuttle-DYT1-shRNA转染培养的大脑皮质神经元和NIH 3T3细胞。我们在不同条件下使用TUNEL分析评估了氧化应激存在下的NIH 3T3细胞和神经元。 DYT1的敲低功效通过实时RT-PCR和Western Blot分析得到证实。暴露于H(2)O(2,)后,在TUNEL分析中呈阳性染色的pSIREN-Shuttle-DYT1-shRNA转染的NIH 3T3细胞的数量显着高于pSIREN-Shuttle-阴性对照转染的细胞-shRNA。 (44.85 +/- 1.81%对8.98 +/- 2.73%,t = 26.168)。被pAd-DYT1-shRNA感染的凋亡神经元(45.63 +/- 7.53%)明显多于被pAd-X阴性对照-shRNA感染的神经元(17.33 +/- 2.43%)(t = 9.816)。 DYT1-shRNA观察到的野生型Torsin A表达的沉默是序列特异性的。 RNAi介导的野生型Torsin A表达的抑制作用会增加由氧化应激引起的细胞凋亡。有理由认为野生型Torsin A具有保护皮层神经元免受氧化应激的能力,在DYT1-δGAG-肌张力障碍的发展中,野生型Torsin A的神经保护功能可能受到损害。

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