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Updated: Apr 21, 2026

Analysis of Brain Mitochondria Using Serial Block-Face Scanning Electron Microscopy
Published on: July 9, 2016
Correlative light and electron microscopic observation of mitochondrial DNA in mammalian cells by using focused-ion
Satoko Okayama1, Keisuke Ohta1, Ryuhei Higashi2
1Division of Microscopic and Developmental Anatomy, Department of Anatomy, Kurume University School of Medicine.
Abstract:
IntroductionMitochondrial fission and fusion events are fundamental mechanisms for quality control of mitochondrial functions. Mitochondrial DNA (mtDNA) usually divides in offspring mitochondria after fission and mtDNA dynamics are thought to be coordinated with mitochondrial turnover. Recently, several candidate mechanisms for the relationship between mtDNA division and mitochondrial fission have been suggested ([1], 2012). The dynamics of mtDNA or nucleoids can be observed using fluorescent microscopy, but the ultrastructural aspects of their coordination remain unclear. Although visualization of mtDNA at the electron microscopic level is an important step in understanding how mtDNA division and mitochondrial division are coordinated, it is quite difficult to observe using conventional electron microscopic methods. In the present study, we attempted to establish correlative light and electron microscopy (CLEM) observation to visualize the three-dimensional localization of the mtDNA /nucleoid within mitochondria at electron microscopic resolution using a combination of immuno-electron and focused-ion beam scanning electron microscopy (FIB/SEM) tomography methods. Materials & methodsHeLa cells were fixed using 4% paraformaldehyde and 0.05% glutaraldehyde in 0.1 M phosphate buffer, and then immunohistochemically labeled with anti-TFAM IgG antibody (Abnova, USA) or anti-DNA IgM antibody (Progen, Germany). The cells were then reacted with biotin-labeled secondary antibodies. The immunoreactivities were visualized using two methods: the ABC method and streptavidin Fluoro-Nanogold. Immunohistochemically labeled specimens were then observed using light microscopy. These specimens were then developed using a Gold Enhancement kit (Nanoprobe, USA) for 150 s. Specimens for electron microscopy were stained using the ROTO method, embedded in resin, and subjected to FIB/SEM tomography (Quanta 3D FEG, FEI). 3D reconstruction was performed using the software Amira (FEI). Results & discussionWe were not able to identify a nucleoid-like structure within mitochondria, even in a complete 3D reconstruction using FIB/SEM with conventional staining. In CLEM observations, immunoreaction (IR) products were correlatively observed under LM and EM. Pre-embedding immuno-electron microscopy showed DAB and gold IR in the matrix of some mitochondria. Interestingly, IR products were observed in the globular region of the mitochondrial matrix (approximately 0.4 µm in diameter), frequently localizing in the peripheral end of the mitochondrial matrix, adjacent to the inner membrane. Using the post-embedding immunogold method, gold labels were also observed in a portion of the matrix adjacent to the mitochondrial inner membrane. These immunocytochemical results were concordant with our fluorescent microscopic observations.
Insights
This study visualizes mitochondrial DNA (mtDNA) nucleoids using correlative light and electron microscopy (CLEM). Results show mtDNA nucleoids are globular structures within the mitochondrial matrix, near the inner membrane.
Area of Science:
- Cell Biology
- Mitochondrial Biology
- Molecular Genetics
Background:
- Mitochondrial dynamics, including fission and fusion, are crucial for maintaining mitochondrial health and function.
- Mitochondrial DNA (mtDNA) dynamics are believed to be coordinated with mitochondrial turnover, but the precise mechanisms remain unclear.
- Visualizing mtDNA at the ultrastructural level is challenging, hindering understanding of its coordination with mitochondrial division.
Purpose of the Study:
- To establish correlative light and electron microscopy (CLEM) for visualizing the 3D localization of mtDNA nucleoids within mitochondria.
- To elucidate the ultrastructural coordination between mtDNA division and mitochondrial fission.
Main Methods:
- Utilized HeLa cells fixed with paraformaldehyde and glutaraldehyde.
- Employed immunohistochemical labeling with anti-TFAM and anti-DNA antibodies, followed by ABC and streptavidin Fluoro-Nanogold visualization.
- Combined pre-embedding immuno-electron microscopy, post-embedding immunogold labeling, and focused-ion beam scanning electron microscopy (FIB/SEM) tomography for 3D reconstruction.
Main Results:
- Conventional electron microscopy and FIB/SEM tomography failed to identify distinct nucleoid structures.
- CLEM revealed immunoreaction products (indicating mtDNA) within globular regions (approx. 0.4 µm) in the mitochondrial matrix.
- These mtDNA-containing regions were frequently located peripherally, adjacent to the inner mitochondrial membrane.
Conclusions:
- Correlative light and electron microscopy successfully visualized the localization of mtDNA within mitochondria at high resolution.
- mtDNA appears to reside in globular structures within the mitochondrial matrix, near the inner membrane.
- This technique provides a foundation for further investigation into the ultrastructural coordination of mtDNA and mitochondrial dynamics.

