Topoisomerase I (TopA) Is Recruited to ParB Complexes and Is Required for Proper Chromosome Organization during Streptomyces coelicolor Sporulation

Author:

Szafran Marcin1,Skut Patrycja1,Ditkowski Bartosz2,Ginda Katarzyna1,Chandra Govind3,Zakrzewska-Czerwińska Jolanta12,Jakimowicz Dagmara12

Affiliation:

1. University of Wroclaw, Faculty of Biotechnology, Laboratory of Molecular Microbiology, Wroclaw, Poland

2. Institute of Immunology and Experimental Therapy, Laboratory of Microbiology, Wroclaw, Poland

3. John Innes Centre, Molecular Microbiology Department, Norwich, United Kingdom

Abstract

ABSTRACT Streptomyces species are bacteria that resemble filamentous fungi in their hyphal mode of growth and sporulation. In Streptomyces coelicolor , the conversion of multigenomic aerial hyphae into chains of unigenomic spores requires synchronized septation accompanied by segregation of tens of chromosomes into prespore compartments. The chromosome segregation is dependent on ParB protein, which assembles into an array of nucleoprotein complexes in the aerial hyphae. Here, we report that nucleoprotein ParB complexes are bound in vitro and in vivo by topoisomerase I, TopA, which is the only topoisomerase I homolog found in S. coelicolor . TopA cannot be eliminated, and its depletion inhibits growth and blocks sporulation. Surprisingly, sporulation in the TopA-depleted strain could be partially restored by deletion of parB . Furthermore, the formation of regularly spaced ParB complexes, which is a prerequisite for proper chromosome segregation and septation during the development of aerial hyphae, has been found to depend on TopA. We hypothesize that TopA is recruited to ParB complexes during sporulation, and its activity is required to resolve segregating chromosomes.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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