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Showing 1 to 6 of 6 for “"Caulobacter cell cycle"”.

  1. SciP : a novel inhibitor of CtrA transcriptional activity in Caulobacter crescentus

    Cells must sense changes in their environment and respond appropriately in order to survive. A common survival strategy is for cells to translate an environmental signal into the activity of a transcription factor they effects a change in gene expression. In this way, cells can express a gene …

    mit Repository record for SciP : a novel inhibitor of CtrA transcriptional activity in Caulobacter crescentus (opens in a new tab)

  2. Stochastic Modeling and Simulation of Reaction-Diffusion Biochemical Systems

    … to the spatiotemporal regulatory network in Caulobacter crescentus is included. A stochastic model based on Turing pattern is exploited to demonstrate the bipolarization of a scaffold protein, PopZ, during Caulobacter cell cycle. In addition, the stochastic simulation of the spatiotemporal …

    vt Repository record for Stochastic Modeling and Simulation of Reaction-Diffusion Biochemical Systems (opens in a new tab)

  3. Spatiotemporal Model of the Asymmetric Division Cycle of Caulobacter crescentus

    The life cycle of Caulobacter crescentus is of interest because of the asymmetric nature of cell division that gives rise to progeny that have distinct morphology and function. One daughter called the stalked cell is sessile and capable of DNA replication, while the second daughter called the …

    vt Repository record for Spatiotemporal Model of the Asymmetric Division Cycle of Caulobacter crescentus (opens in a new tab)

  4. Mathematical Model of the Cell Cycle Control and Asymmetry Development in Caulobacter crescentus

    Caulobacter crescentus goes through a classic dimorphic cell division cycle to adapt to the stringent environment and reduce intraspecific competition. Caulobacter mother cell gives rise to two progenies with distinct morphology - a motile swarmer cell equipped with a flagellum and a sessile …

    vt Repository record for Mathematical Model of the Cell Cycle Control and Asymmetry Development in Caulobacter crescentus (opens in a new tab)

  5. Stochastic Modeling and Simulation of Multiscale Biochemical Systems

    … and proteins and their dynamics in a single cell, which calls for quantitative stochastic models for gene and protein networks at cellular levels that match well with the data and account for cellular noise. This dissertation studies a stochastic spatiotemporal model of the Caulobacter

    vt Repository record for Stochastic Modeling and Simulation of Multiscale Biochemical Systems (opens in a new tab)

  6. Characterization of the partitioning protein ParB in Caulobacter crescentus

    Submission published under a 24 month embargo labeled 'Closed Access', the embargo will last until 2025-05-01

    uiuc Repository record for Characterization of the partitioning protein ParB in Caulobacter crescentus (opens in a new tab)