Bead-spring simulations in a cylinder reproduce E. coli chromosome organization and segregation in fast growth by using modified polymer topology to generate organizing entropic forces.
Molecular dy- namics simulation study of nonconcatenated ring poly- mers in a melt
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Topology mediated organization of E.coli chromosome in fast growth conditions
Bead-spring simulations in a cylinder reproduce E. coli chromosome organization and segregation in fast growth by using modified polymer topology to generate organizing entropic forces.