Electron microscopic observation and single-stranded DNA binding activity of the Mcm4,6,7 complex

M Sato1, T Gotow, Z You

  • 1Mitsubishi Kasei Institute of Life Sciences, 11 Minamiooya, Tokyo, Machida, 194-8511, Japan.

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.