The rapidly evolving view of lysosomal storage diseases.

Giancarlo Parenti, Diego L Medina, Andrea Ballabio

Journal: EMBO molecular medicine 2021;13(2):e12836

PMID: 33459519

Abstract

Lysosomal storage diseases are a group of metabolic disorders caused by deficiencies of several components of lysosomal function. Most commonly affected are lysosomal hydrolases, which are involved in the breakdown and recycling of a variety of complex molecules and cellular structures. The understanding of lysosomal biology has progressively improved over time. Lysosomes are no longer viewed as organelles exclusively involved in catabolic pathways, but rather as highly dynamic elements of the autophagic-lysosomal pathway, involved in multiple cellular functions, including signaling, and able to adapt to environmental stimuli. This refined vision of lysosomes has substantially impacted on our understanding of the pathophysiology of lysosomal disorders. It is now clear that substrate accumulation triggers complex pathogenetic cascades that are responsible for disease pathology, such as aberrant vesicle trafficking, impairment of autophagy, dysregulation of signaling pathways, abnormalities of calcium homeostasis, and mitochondrial dysfunction. Novel technologies, in most cases based on high-throughput approaches, have significantly contributed to the characterization of lysosomal biology or lysosomal dysfunction and have the potential to facilitate diagnostic processes, and to enable the identification of new therapeutic targets.

© 2021 The Authors. Published under the terms of the CC BY 4.0 license.

Address: Telethon Institute of Genetics and Medicine, Pozzuoli, Italy.; Department of Translational Medical Sciences, Section of Pediatrics, Federico II University, Naples, Italy.; Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA.; Jan and Dan Duncan Neurological Research Institute, Texas Children Hospital, Houston, TX, USA.; SSM School for Advanced Studies, Federico II University, Naples, Italy.
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