Department of Anatomy, Cell and Developmental Biology, Eötvös Loránd University, Budapest, Hungary.
Autophagy. 2012 Jul 1;8(7):1124-35. doi: 10.4161/auto.20069. Epub 2012 May 7.
Autophagy delivers cytoplasmic material for lysosomal degradation in eukaryotic cells. Starvation induces high levels of autophagy to promote survival in the lack of nutrients. We compared genome-wide transcriptional profiles of fed and starved control, autophagy-deficient Atg7 and Atg1 null mutant Drosophila larvae to search for novel regulators of autophagy. Genes involved in catabolic processes including autophagy were transcriptionally upregulated in all cases. We also detected repression of genes involved in DNA replication in autophagy mutants compared with control animals. The expression of Rack1 (receptor of activated protein kinase C 1) increased 4.1- to 5.5-fold during nutrient deprivation in all three genotypes. The scaffold protein Rack1 plays a role in a wide range of processes including translation, cell adhesion and migration, cell survival and cancer. Loss of Rack1 led to attenuated autophagic response to starvation, and glycogen stores were decreased 11.8-fold in Rack1 mutant cells. Endogenous Rack1 partially colocalized with GFP-Atg8a and early autophagic structures on the ultrastructural level, suggesting its involvement in autophagosome formation. Endogenous Rack1 also showed a high degree of colocalization with glycogen particles in the larval fat body, and with Shaggy, the Drosophila homolog of glycogen synthase kinase 3B (GSK-3B). Our results, for the first time, demonstrated the fundamental role of Rack1 in autophagy and glycogen synthesis.
自噬将细胞质物质递送给真核细胞的溶酶体进行降解。饥饿诱导高水平的自噬以促进在缺乏营养物质的情况下的存活。我们比较了喂养和饥饿对照、自噬缺陷 Atg7 和 Atg1 缺失突变体果蝇幼虫的全基因组转录谱,以寻找自噬的新调节因子。包括自噬在内的参与分解代谢过程的基因在所有情况下都转录上调。我们还检测到自噬突变体与对照动物相比,参与 DNA 复制的基因受到抑制。在所有三种基因型中,Rack1(蛋白激酶 C 受体 1 的受体)的表达在营养剥夺期间增加了 4.1 到 5.5 倍。支架蛋白 Rack1 在包括翻译、细胞黏附和迁移、细胞存活和癌症在内的广泛过程中发挥作用。Rack1 的缺失导致对饥饿的自噬反应减弱,并且 Rack1 突变细胞中的糖原储存减少了 11.8 倍。内源性 Rack1 与 GFP-Atg8a 和超微结构上的早期自噬结构部分共定位,表明其参与自噬体形成。内源性 Rack1 还与幼虫脂肪体中的糖原颗粒以及 Shaggy(糖原合酶激酶 3B 的果蝇同源物)表现出高度的共定位。我们的结果首次证明了 Rack1 在自噬和糖原合成中的基本作用。