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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >ZBTB38, a novel regulator of autophagy initiation targeted by RB1CC1/FIP200 in spinal cord injury
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ZBTB38, a novel regulator of autophagy initiation targeted by RB1CC1/FIP200 in spinal cord injury

机译:ZBTB38,脊髓损伤中的RB1CC1 / FIP200靶向的新型稳压器

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摘要

Apoptosis is an important contributing factor in spinal cord injury (SCI). ZBTB38 is involved in the transcriptional regulation of multiple signaling pathways, is differentially expressed at different SCI stages, and may provide a therapeutic strategy for the treatment of patients with SCI. In this study, we found that autophagy is blocked in ZBTB38 knockdown SH-SY5Y cells and that the expression levels of LC3B II/I decreased and P62 increased. We used transcriptome high-throughput sequencing to identify the target in ZBTB38 knockdown cells. From the transcriptome profile, RB1CC1 (i.e., FIP200), a key component of the initiation machinery of autophagy (FIP200-ATG13-ULK1-ATG101), was found to decrease 4.2-fold following ZBTB38 knockdown. When RB1CC1-overexpressed plasmids were transfected into ZBTB38 knockdown cells, they rescued the phenotype of ZBTB38 knockdown cells. Cell proliferation and viability were significantly enhanced by RB1CC1 over expression, and LC3B and P62 expression returned to their original levels. We also injected ZBTB38-overexpressed lentivirus into the injured center of the spinal cord and detected significant upregulation of RB1CC1 in the spinal cord. ZBTB38 overexpression can promote autophagy and partly rescue the secondary damage of SCI. Therefore, our findings provide a new strategy for the treatment of SCI.
机译:细胞凋亡是脊髓损伤(SCI)中的重要贡献因素。 ZBTB38涉及多个信号通路的转录调节,在不同的SCI阶段差异表达,并且可以提供用于治疗SCI患者的治疗策略。在这项研究中,我们发现在ZBTB38敲低SH-SY5Y细胞中封闭自噬,并且LC3B II / I的表达水平降低,P62增加。我们使用转录组高通量测序来识别ZBTB38敲低细胞中的目标。从转录组曲线,RB1CC1(即FIP200),发现自噬发生机械的关键组分(FIP200-ATG13-ULK1-ATG101),以减少ZBTB38敲低后4.2倍。当将RB1CC1过滤的质粒转染到ZBTB38敲低细胞中时,它们救出了ZBTB38敲低细胞的表型。 RB1CC1过表达明显增强细胞增殖和活力,LC3B和P62表达返回其原始水平。我们还将ZBTB38过表达的慢病毒注入脊髓的受伤中心,并检测到脊髓中RB1CC1的显着上调。 ZBTB38过表达可以促进自噬,部分拯救SCI的二次损伤。因此,我们的调查结果为治疗SCI提供了一种新的策略。

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