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Identifying essential genes in Streptococcus mutans and finding a working equivalent of the cell division regulator RocS

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Abstract

Nine legacy hypothetical essential genes in Streptococcus mutans were characterized using an integrated functional genomics pipeline.

  • Comparative transcriptomics and proteomics identified a conserved baseline stress response associated with essential pathways.
  • The metabolic locus citZ-citB-idh and enzymes for insoluble matrix synthesis (gtfBC) were downregulated during stress.
  • The function of SMU_393 was resolved, identifying it as a regulator of chromosome segregation similar to pneumococcal RocS.
  • Depletion of SMU_393 caused abnormal cell widening, increased sensitivity to DNA damage, and a notable presence of anucleate cells.
  • A spontaneous mutation in dnaA (Q197E) alleviated these phenotypes, suggesting a potential compensatory mechanism.

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