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SMC complex unidirectionally translocates DNA by coupling segment capture with an asymmetric kleisin path.

Masataka Yamauchi | Giovanni Bruno Brandani | Tsuyoshi Terakawa | Shoji Takada
eLife | 2026

SMC (structural maintenance of chromosomes) protein complexes are ring-shaped molecular motors essential for genome folding. Despite recent progress, the detailed molecular mechanism of DNA translocation in concert with the ATP-driven conformational changes of the complex remains to be clarified. In this study, we elucidated the mechanisms of SMC action on DNA using all-atom and coarse-grained molecular dynamics simulations. We first created a near-atomic full-length model of a prokaryotic SMC-kleisin complex based on experimental structures and implemented ATP-dependent conformational changes using a structure-based coarse-grained model. We further incorporated key protein-DNA hydrogen-bond interactions derived from fully atomistic simulations. Extensive simulations of the SMC complex with 800 base pairs of duplex DNA over the ATP cycle observed unidirectional DNA translocation by the SMC complex. The process exhibited a step size of ~200 base pairs, wherein the SMC complex captured a DNA segment of about the same size within the SMC ring in the engaged state, followed by its pumping into the kleisin ring as ATP was hydrolyzed. Analysis of trajectories identified the asymmetric path of the kleisin as a critical factor for the observed unidirectionality.

Pubmed ID: 42017784

Research resources used in this publication

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Associated grants

  • Agency: JSPS KAKENHI,
    Id: 20H05934
  • Agency: JSPS KAKENHI,
    Id: 21H02441
  • Agency: MEXT grants "Program for Promoting Researches on the Supercomputer Fugaku",
    Id: JPMXP1020230119

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MODELLER (tool)

RRID:SCR_008395

Software tool as Program for Comparative Protein Structure Modelling by Satisfaction of Spatial Restraints. Used for homology or comparative modeling of protein three dimensional structures. User provides alignment of sequence to be modeled with known related structures and MODELLER automatically calculates model containing all non hydrogen atoms.

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Japanese Ministry of Education Culture Sports Science and Technology (MEXT) (tool)

RRID:SCR_011325

One of the eleven Ministries of Japan that composes part of the executive branch of the Government of Japan. Their goal is to improve the development of Japan in relation with the international community.

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