bioRxiv · 10.1101/537373
Mito-SinCe2 Approach to Quantify Relationships between Mitochondrial Dynamics and Energetics status
Abstract
Mitochondrial dynamics primarily refers to the opposing fission and fusion events between individual mitochondria, which maintains steady-state mitochondrial morphology in cells. The details of the bidirectional relationship between mitochondrial dynamics and energetics are unclear as the methods to integrate these mitochondrial aspects are lacking. To study the quantitative relationship between mitochondrial dynamics (fission, fusion, matrix continuity and diameter) and energetics (ATP and redox), we have developed and validated an analytical approach, mito-SinCe2. Application of this approach led to the hypothesis that mitochondria-dependent ovarian tumor initiating cells interconvert between 3 states with distinct relationships between mitochondrial energetics and dynamics. Interestingly, fusion and ATP increase linearly with each other only once a certain level of fusion is attained. Moreover, mitochondrial dynamics status changes linearly either with ATP or with redox, but not simultaneously with both. Furthermore, mito-SinCe2 analyses can potentially predict new quantitative features of the opposing fission vs. fusion relationship and classify cells into functional classes based on their mito-SinCe2 states.
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Mitra, K., Spurlock, B., Gupta, P., Basu, M. K., Mukherjee, A., Hjelmeland, A., Darley-Usmar, V., Parker, D., Foxall, M.. 2019-02-01. Mito-SinCe2 Approach to Quantify Relationships between Mitochondrial Dynamics and Energetics status. https://doi.org/10.1101/537373
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