Telethon Institute of Genetics and Medicine (TIGEM), Via Campi Flegrei 34, 80078 Pozzuoli ,NA, Italy.
Telethon Institute of Genetics and Medicine (TIGEM), Via Campi Flegrei 34, 80078 Pozzuoli ,NA, Italy.
Cell Calcium. 2018 Jan;69:112-121. doi: 10.1016/j.ceca.2017.06.006. Epub 2017 Jun 24.
Efficient functioning of lysosome is necessary to ensure the correct performance of a variety of intracellular processes such as degradation of cargoes coming from the endocytic and autophagic pathways, recycling of organelles, and signaling mechanisms involved in cellular adaptation to nutrient availability. Mutations in lysosomal genes lead to more than 50 lysosomal storage disorders (LSDs). Among them, mutations in the gene encoding TRPML1 (MCOLN1) cause Mucolipidosis type IV (MLIV), a recessive LSD characterized by neurodegeneration, psychomotor retardation, ophthalmologic defects and achlorhydria. At the cellular level, MLIV patient fibroblasts show enlargement and engulfment of the late endo-lysosomal compartment, autophagy impairment, and accumulation of lipids and glycosaminoglycans. TRPML1 is the most extensively studied member of a small family of genes that also includes TRPML2 and TRPML3, and it has been found to participate in vesicular trafficking, lipid and ion homeostasis, and autophagy. In this review we will provide an update on the latest and more novel findings related to the functions of TRPMLs, with particular focus on the emerging role of TRPML1 and lysosomal calcium signaling in autophagy. Moreover, we will also discuss new potential therapeutic approaches for MLIV and LSDs based on the modulation of TRPML1-mediated signaling.
溶酶体的高效功能对于确保各种细胞内过程的正确执行是必要的,这些过程包括来自内吞作用和自噬途径的货物降解、细胞器的回收,以及细胞适应营养可用性的信号机制。溶酶体基因的突变导致超过 50 种溶酶体贮积症(LSD)。其中,编码 TRPML1(MCOLN1)的基因突变导致粘脂贮积症 IV 型(MLIV),这是一种隐性 LSD,其特征是神经退行性变、精神运动迟缓、眼科缺陷和胃酸缺乏。在细胞水平上,MLIV 患者成纤维细胞显示晚期内溶酶体区室的增大和吞噬作用、自噬功能障碍,以及脂质和糖胺聚糖的积累。TRPML1 是一个小基因家族中研究最广泛的成员,该家族还包括 TRPML2 和 TRPML3,它被发现参与囊泡运输、脂质和离子稳态以及自噬。在这篇综述中,我们将提供有关 TRPML 功能的最新和更新颖发现的最新信息,特别关注 TRPML1 和溶酶体钙信号在自噬中的新兴作用。此外,我们还将讨论基于 TRPML1 介导的信号调节的 MLIV 和 LSD 的新的潜在治疗方法。