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[B. Cell Biology/Stem Cell] B-47



                    Isolation of lysosomal activator regulating lysosomal


                                          damages and cell death




                           Heemin Park¹, Shin-Hyeon Ryu¹, Seo-Hyun Kim¹, Yong-Keun Jung¹*

                          ¹School of Biological Science, Seoul National University, Seoul 08826, Korea





        Lysosomes contribute to maintaining cellular homeostasis via degradation and recycling of subcellular substances
        called autophagy, along with a protective action against foreign materials, such as pathogens, and cellular protein

        aggregates.  Therefore,  cells  avoid  cytotoxicity  of  the  invading  pathogen  or  suppress  cell  death  by  degrading
        cytotoxic proteins and its aggregates through the lysosomal function. We aimed to isolate small molecules that

        affect lysosomal damages and activities. In this study, we established a cell-based lysosomal activity assay and
        screened  a  bioactive  compound  library  to  isolate  new  mediators  affecting  lysosomal  damage.  We  generated

        HeLa/GFP-Galectin3 stable cell line and observed GFP-Gal3 puncta formation when  exposed to lysosomotropic
        LLOME. We isolated several compounds that affected the LLOME-induced GFP-Gal3 puncta formation. Among them,

        we found that mA receptor antagonist (mARA) rescued the processing of cathepsin D and the lysosomal activity as
        assayed with DQ-red BSA. In addition, we found that mARA alleviated LLOME-induced apoptosis. Thus, we intend

        to broaden our understanding on the lysosomal regulation to lysosomal disease models.
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