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      Sensitive detection of lysosomal membrane permeabilization by lysosomal galectin puncta assay.

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          Abstract

          Lysosomal membrane permeabilization (LMP) contributes to tissue involution, degenerative diseases, and cancer therapy. Its investigation has, however, been hindered by the lack of sensitive methods. Here, we characterize and validate the detection of galectin puncta at leaky lysosomes as a highly sensitive and easily manageable assay for LMP. LGALS1/galectin-1 and LGALS3/galectin-3 are best suited for this purpose due to their widespread expression, rapid translocation to leaky lysosomes and availability of high-affinity antibodies. Galectin staining marks individual leaky lysosomes early during lysosomal cell death and is useful when defining whether LMP is a primary or secondary cause of cell death. This sensitive method also reveals that cells can survive limited LMP and confirms a rapid formation of autophagic structures at the site of galectin puncta. Importantly, galectin staining detects individual leaky lysosomes also in paraffin-embedded tissues allowing us to demonstrate LMP in tumor xenografts in mice treated with cationic amphiphilic drugs and to identify a subpopulation of lysosomes that initiates LMP in involuting mouse mammary gland. The use of ectopic fluorescent galectins renders the galectin puncta assay suitable for automated screening and visualization of LMP in live cells and animals. Thus, the lysosomal galectin puncta assay opens up new possibilities to study LMP in cell death and its role in other cellular processes such as autophagy, senescence, aging, and inflammation.

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          Author and article information

          Journal
          Autophagy
          Autophagy
          1554-8635
          1554-8627
          2015
          : 11
          : 8
          Affiliations
          [1 ] a Cell Death and Metabolism Unit; Center for Autophagy, Recycling and Disease; Danish Cancer Society Research Center ; Copenhagen , Denmark.
          Article
          10.1080/15548627.2015.1063871
          4590643
          26114578
          bb9ab89b-f64d-4cf0-8636-6c841714da33
          History

          C. elegans,breast involution,cell death,galectin,lysosome
          C. elegans, breast involution, cell death, galectin, lysosome

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