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Dysregulated DnaB unwinding induces replisome decoupling and daughter strand gaps that are countered by RecA polymerization.
Behrmann, Megan S; Perera, Himasha M; Welikala, Malisha U; Matthews, Jacquelynn E; Butterworth, Lauren J; Trakselis, Michael A.
Afiliación
  • Behrmann MS; Department of Chemistry and Biochemistry, Baylor University, Waco, TX 76798-7348, USA.
  • Perera HM; Department of Chemistry and Biochemistry, Baylor University, Waco, TX 76798-7348, USA.
  • Welikala MU; Department of Chemistry and Biochemistry, Baylor University, Waco, TX 76798-7348, USA.
  • Matthews JE; Department of Chemistry and Biochemistry, Baylor University, Waco, TX 76798-7348, USA.
  • Butterworth LJ; Department of Chemistry and Biochemistry, Baylor University, Waco, TX 76798-7348, USA.
  • Trakselis MA; Department of Chemistry and Biochemistry, Baylor University, Waco, TX 76798-7348, USA.
Nucleic Acids Res ; 52(12): 6977-6993, 2024 Jul 08.
Article en En | MEDLINE | ID: mdl-38808668
ABSTRACT
The replicative helicase, DnaB, is a central component of the replisome and unwinds duplex DNA coupled with immediate template-dependent DNA synthesis by the polymerase, Pol III. The rate of helicase unwinding is dynamically regulated through structural transitions in the DnaB hexamer between dilated and constricted states. Site-specific mutations in DnaB enforce a faster more constricted conformation that dysregulates unwinding dynamics, causing replisome decoupling that generates excess ssDNA and induces severe cellular stress. This surplus ssDNA can stimulate RecA recruitment to initiate recombinational repair, restart, or activation of the transcriptional SOS response. To better understand the consequences of dysregulated unwinding, we combined targeted genomic dnaB mutations with an inducible RecA filament inhibition strategy to examine the dependencies on RecA in mitigating replisome decoupling phenotypes. Without RecA filamentation, dnaBmut strains had reduced growth rates, decreased mutagenesis, but a greater burden from endogenous damage. Interestingly, disruption of RecA filamentation in these dnaBmut strains also reduced cellular filamentation but increased markers of double strand breaks and ssDNA gaps as detected by in situ fluorescence microscopy and FACS assays, TUNEL and PLUG, respectively. Overall, RecA plays a critical role in strain survival by protecting and processing ssDNA gaps caused by dysregulated helicase activity in vivo.
Asunto(s)

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Rec A Recombinasas / ADN de Cadena Simple / Replicación del ADN / AdnB Helicasas / Mutación Idioma: En Año: 2024 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Rec A Recombinasas / ADN de Cadena Simple / Replicación del ADN / AdnB Helicasas / Mutación Idioma: En Año: 2024 Tipo del documento: Article