The effect of the kinetoplast edge loop on network percolation

Author:

Ragotskie Josh1,Morrison Nathaniel23ORCID,Stackhouse Christopher1,Blair Ryan C.2ORCID,Klotz Alexander R.1ORCID

Affiliation:

1. Department of Physics and Astronomy California State University Long Beach California USA

2. Department of Mathematics and Statistics California State University Long Beach California USA

3. Department of Physics University of California Berkeley California USA

Abstract

AbstractWe use graph theory simulations and single molecule experiments to investigate percolation properties of kinetoplasts, the topologically linked mitochondrial DNA from trypanosome parasites. The edges of some kinetoplast networks contain a fiber of redundantly catenated DNA loops, but previous investigations of kinetoplast topology did not take this into account. Our graph simulations track the size of connected components in lattices as nodes are removed, analogous to the removal of minicircles from kinetoplasts. We find that when the edge loop is taken into account, the largest component after the network de‐percolates is a remnant of the edge loop, before it undergoes a second percolation transition and breaks apart. This implies that stochastically removing minicircles from kinetoplast DNA would isolate large polycatenanes, which is observed in experiments that use photonicking to stochastically destroy kinetoplasts from Crithidia fasciculata. Our results imply kinetoplasts may be used as a source of linear polycatenanes for future experiments.

Funder

National Science Foundation

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry

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