Department of Health Sciences & Technology, Gachon Advanced Institute for Health Sciences and Technology (GAIHST), Gachon University, 155 Gaetbeol-ro, Yeonsu-gu, Incheon 21999, Republic of Korea.
Cells. 2023 Jul 12;12(14):1835. doi: 10.3390/cells12141835.
Lysosomes are responsible for protein degradation and clearance in cellular recycling centers. It has been known that the lysosomal chloride level is enriched and involved in the intrinsic lysosomal function. However, the mechanism by which chloride levels can be sensed and that of the chloride-mediated lysosomal function is unknown. In this study, we verified that reduced chloride levels acutely induced lysosomal calcium release through TRPML1 and lysosomal repositioning toward the juxtanuclear region. Functionally, low chloride-induced lysosomal calcium release attenuated cellular migration. In addition, spontaneous exposure to low chloride levels dysregulated lysosomal biogenesis and subsequently induced delayed migration and promoted apoptosis. Two chloride-sensing GXXXP motifs in the TRPML1 were identified. Mutations in the GXXXP motif of TRPML1 did not affect chloride levels, and there were no changes in migratory ability. In this study, we demonstrated that the depletion of chloride induces reformation of the lysosomal calcium pool and subsequently dysregulated cancer progression, which will assist in improving therapeutic strategies for lysosomal accumulation-associated diseases or cancer cell apoptosis.
溶酶体负责细胞回收中心的蛋白质降解和清除。已知溶酶体中的氯离子水平丰富,并参与内在的溶酶体功能。然而,氯离子水平如何被感知以及氯离子介导的溶酶体功能的机制尚不清楚。在这项研究中,我们验证了氯离子水平降低可通过 TRPML1 急性诱导溶酶体钙释放,并使溶酶体向核周区域重新定位。从功能上讲,低氯离子诱导的溶酶体钙释放可减弱细胞迁移。此外,自发暴露于低氯离子水平会扰乱溶酶体发生,随后诱导延迟迁移并促进细胞凋亡。在 TRPML1 中鉴定出两个氯离子感应 GXXXP 基序。TRPML1 中的 GXXXP 基序突变不影响氯离子水平,迁移能力也没有变化。在这项研究中,我们证明氯离子耗竭会重新形成溶酶体钙池,随后扰乱癌症进展,这将有助于改善与溶酶体积累相关的疾病或癌细胞凋亡的治疗策略。