| Literature DB >> 34686324 |
Anna Kosmach1, Barbara Roman1, Junhui Sun1, Armel Femnou2, Fan Zhang3, Chengyu Liu3, Christian A Combs4, Robert S Balaban5, Elizabeth Murphy6.
Abstract
Optical methods for measuring intracellular ions including Ca2+ revolutionized our understanding of signal transduction. However, these methods are not extensively applied to intact organs due to issues including inner filter effects, motion, and available probes. Mitochondrial Ca2+ is postulated to regulate cell energetics and death pathways that are best studied in an intact organ. Here, we develop a method to optically measure mitochondrial Ca2+ and demonstrate its validity for mitochondrial Ca2+ and metabolism using hearts from wild-type mice and mice with germline knockout of the mitochondria calcium uniporter (MCU-KO). We previously reported that germline MCU-KO hearts do not show an impaired response to adrenergic stimulation. We find that these MCU-KO hearts do not take up Ca2+, consistent with no alternative Ca2+ uptake mechanisms in the absence of MCU. This approach can address the role of mitochondrial Ca2+ to the myriad of functions attributed to alterations in mitochondrial Ca2+. Published by Elsevier Inc.Entities:
Keywords: calcium; heart; isoproterenol; mitochondria; spectroscopy
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Year: 2021 PMID: 34686324 DOI: 10.1016/j.celrep.2021.109846
Source DB: PubMed Journal: Cell Rep Impact factor: 9.423