Turtles maintain mitochondrial integrity but reduce mitochondrial respiratory capacity in the heart after cold-acclimation and anoxia

Author:

Bundgaard Amanda1ORCID,Qvortrup Klaus2,Rasmussen Lene Juel3ORCID,Fago Angela1ORCID

Affiliation:

1. Department of Bioscience, Aarhus University, Aarhus, Denmark

2. Department of Biomedical Sciences/CFIM, University of Copenhagen, Copenhagen, Denmark

3. Center for Healthy Aging, Department of Cellular and Molecular medicine, University of Copenhagen, Copenhagen, Denmark

Abstract

Mitochondria are important to cellular homeostasis, but can become a dangerous liability when cells recover from hypoxia. Anoxia-tolerant freshwater turtles show reduced mitochondrial respiratory capacity and production of reactive oxygen species (ROS) after prolonged anoxia, but the mechanisms are unclear. Here, we investigated whether this mitochondrial suppression originates from downregulation of mitochondrial content or intrinsic activity by comparing heart mitochondria from 1) warm (25°C) normoxic, 2) cold-acclimated (4°C) normoxic, and 3) cold-acclimated anoxic turtles. Transmission electron microscopy of heart ventricle revealed that these treatments did not affect mitochondrial volume density and morphology. Furthermore, neither enzyme activity, protein content nor supercomplex distribution of electron transport chain (ETC) enzymes changed significantly. Instead, our data imply that turtles inhibit mitochondrial respiration rate and ROS production by a cumulative effect of slight inhibition of ETC complexes. Together, these results show that maintaining mitochondrial integrity while inhibiting overall enzyme activities are important aspects of anoxia-tolerance.

Funder

Danmarks Frie Forskningsfond

Nordea-fonden

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

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