Molecular dynamics of DNA translocation by FtsK

Author:

Pajak Joshua12ORCID,Arya Gaurav1ORCID

Affiliation:

1. Dept. of Mechanical Engineering and Materials Science, Duke University , Durham , NC  27708, USA

2. Dept. of Biochemistry and Molecular Biotechnology, University of Massachusetts Chan Medical School , Worcester ,  MA  01605, USA

Abstract

Abstract The bacterial FtsK motor harvests energy from ATP to translocate double-stranded DNA during cell division. Here, we probe the molecular mechanisms underlying coordinated DNA translocation in FtsK by performing long timescale simulations of its hexameric assembly and individual subunits. From these simulations we predict signaling pathways that connect the ATPase active site to DNA-gripping residues, which allows the motor to coordinate its translocation activity with its ATPase activity. Additionally, we utilize well-tempered metadynamics simulations to compute free-energy landscapes that elucidate the extended-to-compact transition involved in force generation. We show that nucleotide binding promotes a compact conformation of a motor subunit, whereas the apo subunit is flexible. Together, our results support a mechanism whereby each ATP-bound subunit of the motor conforms to the helical pitch of DNA, and ATP hydrolysis/product release causes a subunit to lose grip of DNA. By ordinally engaging and disengaging with DNA, the FtsK motor unidirectionally translocates DNA.

Funder

National Institutes of Health

NSF

Publisher

Oxford University Press (OUP)

Subject

Genetics

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