Completed Cells, Biochemistry & Physiology Diabetes, Hormones & Metabolism

Investigation of the function of the ER/mitochondria contact sites in cell physiology and disease

In plain English

AI plain-English summary

Every cell in the body relies on close physical contact between two of its internal compartments—the mitochondria and the endoplasmic reticulum—to stay alive, yet scientists do not fully understand how these contact points work or what happens when they break. These contact sites act as signalling hubs, allowing the two compartments to exchange calcium, lipids, and other molecules essential for energy production, cell movement, and programmed cell death. When these contacts malfunction, cells lose their ability to regulate these processes, a defect that has been linked to human diseases. The researchers aim to map the architecture of these contact points and determine their specific roles in normal cell physiology, using biochemical and molecular tools. This is fundamental science. There is no immediate clinical application. However, understanding how these contact sites govern cell survival and metabolism could eventually illuminate the root causes of conditions such as diabetes, neurodegeneration, and metabolic disorders—diseases where cellular signalling goes awry. Past discoveries about organelle communication have already reshaped how researchers think about disease mechanisms; this work adds a critical piece to that picture.

View original technical description
Mitochondria are highly dynamic organelles essential for the survival of the cell. Mitochondrial dynamics has been linked to different physiological functions, and contacts with other organelles are required for specific metabolic activity and mitochondrial behaviour. Indeed, endoplasmic reticulum and mitochondria work together and their closed juxtaposition is considered as a signalling platform for metabolite flux. Alteration of these contacts has been associated with defects in cellular homeostasis and with human disease. The goal of our group is to characterise the architecture and understand the associated functions of these inter-organelle contacts. Using biochemical, molecular and cell biological approaches, we want to investigate the function of the mitochondria/endoplasmic reticulum contact sites in different cell physiology processes including cell death, lipid and calcium fluxes and cell migration. This work will lead us to obtaining new insights into the importance of mitochondria and mitochondria/ER contacts in cellular signalling pathways, and to better understanding the pathomechanisms underpinning human diseases associated with defects in their regulation and dynamics.

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Researchers

Julien Prudent (Principal Investigator)

Related Research

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Original classification

Intramural

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