通过激活 mTOR/TFEB 增强溶酶体功能,减少早期老年性黄斑变性的脂褐素样颗粒

Ana S Falcao, Mafalda Lopes da Silva, Pedro Antas, Cristina Escrevente, Margarida Pedro, Rita Coelho, Ines S Ferreira, Ines P Santos, Thomas C. Ciossek, Paul Nicklin, Sandra Tenreiro, Miguel C. Seabra
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摘要

老年性黄斑变性(AMD)是西方世界最常见的致盲疾病,目前还无法治愈。虽然老年黄斑变性的确切病因尚不清楚,但病变的主要起源似乎是视网膜色素上皮(RPE)。RPE 负责每天消化感光体外节段(POS),这给溶酶体网络带来了沉重的持续负担。体外喂食光感受器外节的实验表明,自发荧光颗粒(AFG)的积累与体内的脂褐素相似,源于溶酶体功能障碍。在这里,我们发现同步吞噬 POS 会导致早期短暂的 mTOR 激活,然后在后期吞噬体成熟过程中受到抑制。mTOR的底物之一,转录因子EB(TFEB)在吞噬体成熟过程中会增加,尽管大部分是以非活性磷酸化形式增加。我们想知道,诱导 mTOR/TFEB 轴是否能改善对 POS 的消化,从而减少 AFG 的负荷。在出现 AFG 后,用雷帕霉素(一种 mTORC1 抑制剂)处理喂养 POS 的细胞,可使 AFG 负荷减少 30%。这种效果依赖于活跃的溶酶体酶和诱导活跃的去磷酸化 TFEB,从而激活 GADD34 和溶酶体生物生成。作为概念的证明,我们发现,过表达构成性活性的去磷酸化 TFEB 能显著减少 POS 依赖性 AFG 的积累。总之,这项研究表明,通过病毒或药物方法激活 RPE 中的 mTOR/TFEB 轴,可作为早期/中期 AMD 病例的细胞保护治疗方法,起到延缓疾病进展的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing lysosome function via mTOR/TFEB activation reduces lipofuscin-like granules in early Age-related Macular Degeneration
Age-related macular degeneration (AMD) is the most common blinding disease in the western world and is currently incurable. Although the exact causes of AMD are not clear, the primary origin of pathology appears to be in the retinal pigment epithelium (RPE). RPE is responsible for the daily digestion of photoreceptor outer segments (POS), which imposes a heavy continuous burden on the lysosomal network. POS feeding assay in vitro suggested that the accumulation of autofluorescence granules (AFG), similar to lipofuscin in vivo, derives from lysosomal dysfunction. Here we show that synchronous phagocytosis of POS leads to early transient mTOR activation followed by inhibition in late phagosome maturation. One of its substrates, the transcription factor EB (TFEB) increases during phagosome maturation albeit mostly in its inactive phosphorylated form. We questioned whether induction of the mTOR/TFEB axis could improve digestion of POS and hence reduce AFG load. Treatment of POS-fed cells with rapamycin, an mTORC1 inhibitor after the appearance of AFG results in 30% reduction of AFG load. This effect is dependent on active lysosomal enzymes and induction of active dephosphorylated TFEB with consequent activation of GADD34 and lysosomal biogenesis. As a proof of concept, we show that overexpressing a constitutively active form of unphosphorylated TFEB dramatically reduces POS-dependent AFG accumulation. Overall, this study suggests that viral or pharmacological approaches activating the mTOR/TFEB axis in the RPE could be beneficial as cell-protective treatment of early/intermediate cases of AMD, acting to delay progression of the disease.
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