Supercomplex Separation Analysis

Supercomplex separation analysis is a biochemical approach for resolving and characterizing assemblies formed by multiple protein complexes, helping reveal how their organization influences cellular function. Typically, mild detergents preserve noncovalent interactions during membrane-protein extraction, while native electrophoresis separates intact assemblies according to size, shape, and charge; subsequent denaturing analysis or activity assays can identify their components and function. In mitochondrial research, this method is used to examine respiratory-chain supercomplexes, their stability, and changes associated with metabolic state or disease. The resulting structural and functional information supports studies of electron transport, energy conversion, protein interactions, and membrane organization.

Supercomplex Separation Analysis - Related Videos

Research

JoVE Journal - Biochemistry
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Hybrid Clear/Blue Native Electrophoresis for the Separation and Analysis of Mitochondrial Respiratory Chain Supercomplexes

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Cited by 7 •

2019

Here we present a protocol to extract, resolve and identify mitochondrial supercomplexes which minimizes exposure to detergents and Coomassie Blue. This protocol offers an optimal balance between resolution, and preservation of enzyme activities, while minimizing the risk of losing labile protein-protein interactions.

Research

JoVE Journal - Biochemistry

Analyzing Supercomplexes of the Mitochondrial Electron Transport Chain with Native Electrophoresis, In-gel Assays, and Electroelution

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Cited by 15 •

2017

This protocol describes the separation of functional mitochondrial electron transport chain complexes (Cx) I-V and supercomplexes thereof using native electrophoresis to reveal information about their assembly and structure. The native gel can be subjected to immunoblotting, in-gel assays, and purification by electroelution to further characterize individual complexes.

Education

JoVE Core - Cell Biology

The Supercomplexes in the Crista Membrane

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2023

The mitochondrial cristae membrane is the primary site for the oxidative phosphorylation (OXPHOS) process of energy conversion mediated through respiratory complexes I to V. These complexes have been widely studied for decades, and it has been proven that they form supramolecular structures called respiratory supercomplexes (SC). These higher-order complexes may be crucial in maintaining the biochemical structure and improving the physiological activity of the individual complexes while...

Mating and Tetrad Separation of Chlamydomonas reinhardtii for Genetic Analysis

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Cited by 35 •

2009

Mating and tetrad separation are required for genetic analysis in Chlamydomonas reinhardtii. Here we demonstrate standard methods for gametogenesis, mating, zygote germination and tetrad dissection. This protocol consists of an easy-to-follow series of steps that will make genetic approaches amenable to scientists who are less familiar with Chlamydomonas.

Isolation of Mitochondria for Mitochondrial Supercomplex Analysis from Small Tissue and Cell Culture Samples

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Cited by 2 •

2024

This protocol describes a technique for the analysis of respiratory supercomplexes when only small amounts of samples are available.

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