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Puthalath, I. R.

Publications and source records attributed to Puthalath, I. R..

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A metabolic hierarchy directs cell cycle transition and morphogenesis

To optimize survival, cells must align differentiation and proliferation with metabolic status. Yet, how metabolic cues fine-tune cell cycle programs and morphogenesis remain unclear. Here, we show that cytosolic redox dynamics critically govern cell cycle transitions in Caulobacter crescentus. By integrating evolutionary genetics with fluxomics, we uncover temporally orchestrated shifts in core metabolic pathways that remodel cytosolic redox across the cell cycle. Early stages channel carbon flux toward unsaturated fatty-acid synthesis and a reverse-TCA to drive cytosolic oxidation-coupled G1-S transition. The later stages depend on an enhanced forward-TCA cycle that promote cytosolic reduction-driven proliferation. Strikingly, perturbing fatty-acid synthesis or reverse/forward-TCA uncouples growth from proliferation. Intriguingly, a biphasic glucose uptake program dictates the cell cycle-stage-specific metabolism. These findings reveal an unprecedented metabolic-redox circuitry coordinating morphogenesis with cell cycle progression in a carefully choreographed menage a trois.

microbiology↗