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Lysosomal Hydrolases01:22

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Lysosomes are the site for the degradation of macromolecules and biological polymers released during membrane trafficking events such as secretory, endocytic, autophagic, and phagocytic pathways. The membrane-enclosed area of the lysosome, called the lumen, contains hydrolytic enzymes active in an acidic environment. These acid hydrolases are functional at a pH between 4.5 and 5 and are involved in cellular processes such as cell signaling, energy metabolism, restoration of the plasma membrane,...
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Eukaryotic cells use different mechanisms to eliminate toxic waste obsolete and worn-out substances. Lysosomes play a pivotal role in this, and hence, these substances are carried to the lysosome from other parts of the cell and extracellular space through different pathways. The most elaborately studied pathways to the lysosome are the endocytic pathways.
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Lysosomes are membrane-enclosed spherical sacs derived from the Golgi apparatus. The most important function of the lysosome is degrading macromolecules and biological polymers that are released during membrane trafficking events such as the secretory, endocytic, autophagic, and phagocytic pathways. The degradation is carried out by several hydrolytic enzymes active in an acidic environment of the lysosomal lumen. These acid hydrolases are involved in cellular processes such as cell signaling,...
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Autophagy is a self-digesting process by which a cell protects itself from threats both within and outside the cell, ranging from abnormal proteins to invading bacteria. In this process, obsolete components of the cell and invading microbes are degraded by hydrolytic enzymes active in an acidic environment of the lysosomal lumen.
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pH plays a critical role in maintaining normal cellular activities. It helps maintain the structure and function of various proteins, dictates the charge on cellular membranes, and is crucial for metabolic reactions inside the cell. Moreover, cells use the energy from the proton motive force to generate ATP.
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Related Experiment Video

Updated: May 23, 2025

Dual-color Correlative Light and Electron Microscopy for the Visualization of Interactions between Mitochondria and Lysosomes
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Dual-color Correlative Light and Electron Microscopy for the Visualization of Interactions between Mitochondria and Lysosomes

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Cellular homeostatic responses to lysosomal damage.

Jingyue Jia1, Suttinee Poolsup1, Jay E Salinas1

  • 1Center for Global Health, Department of Internal Medicine, University of New Mexico Health Sciences Center, Albuquerque, NM 87106, USA; Autophagy, Inflammation, and Metabolism Center of Biochemical Research Excellence, Albuquerque, NM 87106, USA.

Trends in Cell Biology
|March 11, 2025
PubMed
Summary

Cells possess mechanisms to repair damaged lysosomes, crucial for maintaining cellular balance. This review details lysosome repair, remodeling, and its role in disease and therapy.

Keywords:
damaged lysosomesrecognitionremodelingremovalrepairreplacement

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Area of Science:

  • Cell Biology
  • Organelle Biology
  • Homeostasis

Background:

  • Lysosomes are vital organelles regulating cellular homeostasis.
  • Lysosomal membranes are susceptible to damage from various stressors.
  • Cellular responses to lysosomal damage are critical for survival.

Purpose of the Study:

  • To review cellular mechanisms responding to lysosomal damage.
  • To highlight processes restoring lysosomal integrity and homeostasis.
  • To focus on remodeling, metabolic signaling, and stress granules.

Main Methods:

  • Literature review of cellular responses to lysosomal damage.
  • In-depth analysis of lysosome remodeling processes.
  • Discussion of disease implications and therapeutic strategies.

Main Results:

  • Cells activate multiple pathways to address lysosomal damage.
  • Key responses include recognition, repair, removal, replacement, and remodeling.
  • Metabolic signaling and stress granule formation are central to remodeling.

Conclusions:

  • Understanding lysosome repair mechanisms is crucial for cellular health.
  • Lysosomal damage contributes to human diseases.
  • Targeting lysosomal repair offers therapeutic potential for related disorders.