Publications by authors named "T J Cali"

Article Synopsis
  • - The study investigates how calcium (Ca) transfer between the endoplasmic reticulum (ER) and mitochondria, crucial for energy production, is affected by the distance between these organelles, particularly in the context of Parkinson's disease (PD).
  • - Researchers found that a specific distance of approximately 20 nm between ER and mitochondria enhances Ca transfer and supports optimal mitochondrial function, highlighting the importance of maintaining this distance.
  • - In astrocytes derived from PD patients, the natural distance for efficient Ca transfer was reduced, leading to decreased mitochondrial function, but restoring the 20 nm distance improved Ca uptake, suggesting new ways to manage mitochondrial health.
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Article Synopsis
  • * ERO1A depletion in SEPN1 knockout cells enhances ER redox balance, improves mitochondrial function, and combats diaphragmatic weakness in mice, while ERO1A knockout shows beneficial effects on ER stress and MAM functionality.
  • * ERO1A overexpression is observed in muscle biopsies from SEPN1-RM patients, and the ER stress inhibitor tauroursodeoxycholic acid (TUDCA) improves bio
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Neurodegenerative diseases (NDs) encompass an assorted array of disorders such as Alzheimer's disease, Parkinson's disease, and amyotrophic lateral sclerosis, each characterised by distinct clinical manifestations and underlying pathological mechanisms. While some cases have a genetic basis, many NDs occur sporadically. Despite their differences, these diseases commonly feature chronic neuroinflammation as a hallmark.

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Mitochondrial and lysosomal activities are crucial to maintain cellular homeostasis: optimal coordination is achieved at their membrane contact sites where distinct protein machineries regulate organelle network dynamics, ions and metabolites exchange. Here we describe a genetically encoded SPLICS reporter for short- and long- juxtapositions between mitochondria and lysosomes. We report the existence of narrow and wide lysosome-mitochondria contacts differently modulated by mitophagy, autophagy and genetic manipulation of tethering factors.

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Inter-organellar communication is critical for cellular metabolic homeostasis. One of the most abundant inter-organellar interactions are those at the endoplasmic reticulum and mitochondria contact sites (ERMCS). However, a detailed understanding of the mechanisms governing ERMCS regulation and their roles in cellular metabolism are limited by a lack of tools that permit temporal induction and reversal.

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