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Updated: Aug 6, 2026

Single-Molecule Imaging of EWS-FLI1 Condensates Assembling on DNA
Published on: September 8, 2021
Electron microscopic observation and single-stranded DNA binding activity of the Mcm4,6,7 complex
1Mitsubishi Kasei Institute of Life Sciences, 11 Minamiooya, Tokyo, Machida, 194-8511, Japan.
Abstract:
Mcm2-7 proteins that play an essential role in eukaryotic DNA replication contain DNA-dependent ATPase motifs in a central domain that, from yeast to mammals, is highly conserved. Our group has reported that a DNA helicase activity is associated with a 600 kDa human Mcm4, 6 and 7 complex. The structure of the Mcm4,6,7 complex was visualized by electron microscopy after negative staining with uranyl acetate. The complex contained toroidal forms with a central channel and also contained structures with a slit. Gel-shift analysis indicated that the level of affinity of the Mcm4,6,7 complex for single-stranded DNA was comparable to that of SV40 T antigen, although the Mcm4,6,7 complex required longer single-stranded DNA for the binding than did SV40 T antigen. The nucleoprotein complexes of Mcm4,6,7 and single-stranded DNA were visualized as beads in a queue or beads on string-like structures. The formation of these nucleoprotein complexes was erased by Mcm2 that is a potential inhibitor of the Mcm4,6,7 helicase. We also found that the DNA helicase activity of Mcm4,6,7 complex was inhibited by the binding of Mcm3,5 complex. These results support the notion that the Mcm4,6,7 complex functions as a DNA helicase and the formation of 600 kDa complex is essential for the activity.
Insights
The Mcm4,6,7 complex functions as a DNA helicase essential for eukaryotic DNA replication. Its activity is regulated by Mcm2 and Mcm3,5 complexes, impacting DNA replication processes.
Area of Science:
- Molecular Biology
- Biochemistry
- Genetics
Background:
- Mcm2-7 proteins are crucial for eukaryotic DNA replication.
- These proteins possess conserved DNA-dependent ATPase motifs.
- A 600 kDa human Mcm4,6,7 complex exhibits DNA helicase activity.
Purpose of the Study:
- To investigate the structural and functional properties of the human Mcm4,6,7 complex.
- To elucidate the role of Mcm2 and Mcm3,5 complexes in regulating Mcm4,6,7 helicase activity.
Main Methods:
- Electron microscopy with negative staining.
- Gel-shift assays to assess DNA binding affinity.
- Analysis of regulatory interactions with Mcm2 and Mcm3,5 complexes.
Main Results:
- The Mcm4,6,7 complex forms toroidal structures with a central channel and slit-like structures.
- DNA binding affinity is comparable to SV40 T antigen, requiring longer single-stranded DNA.
- Nucleoprotein complexes visualized as 'beads on a string'.
- Mcm2 and Mcm3,5 complexes inhibit Mcm4,6,7 helicase activity.
Conclusions:
- The Mcm4,6,7 complex functions as a DNA helicase.
- Formation of the 600 kDa complex is essential for its helicase activity.
- Regulation by Mcm2 and Mcm3,5 is critical for DNA replication control.

