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MIRAVA POLYSCOPE – All in one and on for all: the perfect image
Science beyond Barriers

abberior instruments

Cell Biology, Physiology

2024
Nature Communications

Spatial mapping of hepatic ER and mitochondria architecture reveals zonated remodeling in fasting and obesity

Authors:

Güneş Parlakgül, Song Pang, Leonardo L. Artico, Nina Min, Erika Cagampan, Reyna Villa, Renata L. S. Goncalves, Grace Yankun Lee, C. Shan Xu, Gökhan S. Hotamışlıgil, Ana Paula Arruda

Keywords:

3-D reconstruction; Endocrine system and metabolic diseases; Metabolism; Organelles; hepatocytes; liver zonation; RRBP1; nutrient availability; diet

Abstract:

The hepatocytes within the liver present an immense capacity to adapt to changes in nutrient availability. Here, by using high resolution volume electron microscopy, we map how hepatic subcellular spatial organization is regulated during nutritional fluctuations and as a function of liver zonation. We identify that fasting leads to remodeling of endoplasmic reticulum (ER) architecture in hepatocytes, characterized by the induction of single rough ER sheet around the mitochondria, which becomes larger and flatter. These alterations are enriched in periportal and mid-lobular hepatocytes but not in pericentral hepatocytes. Gain- and loss-of-function in vivo models demonstrate that the Ribosome receptor binding protein1 (RRBP1) is required to enable fasting-induced ER sheet-mitochondria interactions and to regulate hepatic fatty acid oxidation. Endogenous RRBP1 is enriched around periportal and mid-lobular regions of the liver. In obesity, ER-mitochondria interactions are distinct and fasting fails to induce rough ER sheet-mitochondrion interactions. These findings illustrate the importance of a regulated molecular architecture for hepatocyte metabolic flexibility.

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Superresolution & Confocal Systems

  • Overview
  • MINFLUX
  • MIRAVA POLYSCOPE
  • INFINITY
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  • Software Overview
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  • STEDYCON smart control
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Superresolution & Confocal Modules

  • Overview
  • MINFLUX Module
  • MATRIX Detector
  • TIMEBOW Imaging
  • FLEXPOSURE Illumination
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