6.20
Bacteria manage stress through regulatory systems, such as the Pho regulon, which helps respond to phosphorus scarcity.
This system uses a two-component signal transduction consisting of PhoR, a sensor, and PhoB, a response regulator.
During phosphorus scarcity, PhoR detects low phosphorus, autophosphorylates, and transfers the phosphate to PhoB, activating phosphorus uptake genes.
Conversely, when phosphorus is abundant, PhoB dephosphorylates, downregulating these genes.
Bacteria also face stress due to protein damage from heat, chemicals, and radiation.
σ32, also called RpoH, is involved in activating the expression of heat shock proteins.
Under non-stress conditions, the chaperone protein DnaK binds to σ32, preventing an excessive heat shock response.
During stress, DnaK preferentially binds misfolded proteins, freeing σ32 to increase heat shock protein expression.
Once the stress subsides and proteins are properly refolded, DnaK resumes binding to σ32, reducing heat shock protein levels.
Additionally, certain proteases are induced as part of the heat shock response and degrade denatured or aggregated proteins.
Bacteria have global regulatory systems that control several types of stress mechanisms. These include Pho regulon and the heat shock response, which…
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