Institut für Zelluläre und Molekulare Anatomie (Anatomie III), Klinikum der Johann Wolfgang von Goethe-Universität, Theodor-Stern-Kai 7, 60590, Frankfurt/Main, Germany.
Mol Neurobiol. 2016 Oct;53(8):5500-9. doi: 10.1007/s12035-015-9453-2. Epub 2015 Oct 12.
Beclin-1 is assumed to be a critical component participating in autophagosome formation in mammals; however, the exact role of Beclin-1 in autophagy remains controversial. Here (1) we created a HT22-Beclin-1-knockdown cell line using the Q-techBECN1 technique, (2) examined the potential role of Beclin-1 in an autophagic response in hippocampal HT22 neurons challenged with rapamycin, (3) investigated the expression of several gene products involved in the autophagic pathway, and (4) checked the effects of Beclin-1 knockdown on neuronal death induced by AAS. Rapamycin induced and altered the expression of autophagy signature proteins in wild-type cultures as well as in HT22-Beclin-1-knockdown cells. However, among the examined markers, only two factors exhibited dramatic changes when comparing controls to HT22-Beclin-1-knockdown cells. The amount of LC3, an important protein for the initiation of autophagosome formation and LAMP-1, a major constituent of the lysosomal membrane, underwent a dramatic and highly significant increase in control cultures challenged with rapamycin. In contrast, rapamycin was not able to induce any significant changes in LC3 and LAMP-1 levels in HT22-Beclin-1-knockdown cells. In addition, the knockdown of Beclin-1 enhanced neuronal susceptibility to death signals induced by AAS. Our data demonstrate the essential role of Beclin-1 in the formation of autophagosomes and lysosome biogenesis and underline that deletion of this key system is deleterious for cell viability.
Beclin-1 被认为是哺乳动物参与自噬体形成的关键组成部分;然而,Beclin-1 在自噬中的确切作用仍存在争议。在这里,(1)我们使用 Q-techBECN1 技术创建了 HT22-Beclin-1 敲低细胞系,(2)研究了 Beclin-1 在雷帕霉素诱导的海马 HT22 神经元自噬反应中的潜在作用,(3)研究了参与自噬途径的几种基因产物的表达,(4)检查了 Beclin-1 敲低对 AAS 诱导的神经元死亡的影响。雷帕霉素诱导并改变了野生型培养物以及 HT22-Beclin-1 敲低细胞中自噬特征蛋白的表达。然而,在检查的标记物中,只有两种因子在将对照与 HT22-Beclin-1 敲低细胞进行比较时表现出明显变化。LC3 是自噬体形成的起始的重要蛋白,LAMP-1 是溶酶体膜的主要成分,在对照培养物中用雷帕霉素处理后,其数量发生了显著且具有统计学意义的增加。相比之下,雷帕霉素不能诱导 HT22-Beclin-1 敲低细胞中 LC3 和 LAMP-1 水平的任何显著变化。此外,Beclin-1 的敲低增强了神经元对 AAS 诱导的死亡信号的敏感性。我们的数据证明了 Beclin-1 在自噬体和溶酶体生物发生形成中的重要作用,并强调了该关键系统的缺失对细胞活力有害。