Completed Cells, Biochemistry & Physiology Genetics & Molecular Biology

Lipins: Linking phospholipid biosynthesis to organelle biogenesis

In plain English

AI plain-English summary

Every cell in the body relies on a family of enzymes called lipins to build the fatty membranes that wrap its internal compartments. These membranes are not just passive bags—their lipid composition controls how organelles change shape, communicate, and send chemical signals. Lipins also help produce triglycerides, the main energy stores in fat cells, and mutations in these enzymes are known to disrupt fat metabolism. Yet scientists do not fully understand how lipins coordinate lipid production with the construction of new membranes and organelles. This project aims to map that link, using experiments from yeast to human cells. If successful, it will reveal a fundamental mechanism of cell biology that connects basic fat chemistry to organelle structure. This is fundamental science with no immediate clinical application. However, a clearer picture of how lipins control lipid balance could eventually inform understanding of metabolic disorders such as obesity and lipodystrophy, where fat storage and membrane function go awry. Past discoveries in lipid enzymology have already led to drugs for high cholesterol; this work could lay similar groundwork.

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Cells use lipids as building blocks for the formation of membranes. Membranes separate cells from their environment and are also essential for the organization of the intracellular space into several compartments, or organelles, each with its own specific function. Lipids determine the physical properties of membranes, such as their ability to change shape and their permeability. Moreover, lipids can produce chemical messages and thus local changes in lipid composition affect the way organelles communicate with each other. The main aim of this project is to understand how a family of enzymes, conserved from yeasts to humans, regulates lipid production and how this in turn impacts on membrane biogenesis and organelle structure/function. Some of these enzymes control also production of triglycerides, the major energy store in fat cells and there is evidence that their mutation disrupts fat metabolism. By studying how these enzymes function, we hope to learn more about conditions like obesity and lipodystrophy.

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Researchers

Symeon Siniossoglou (Principal Investigator)

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Fellowship

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