SummaryThe two-component phosphorylation network is of critical importance for bacterial growth and physiology. Here, we address plasticity and interconnection of distinct signal transduction pathways within this network. In Caulobacter crescentus antagonistic activities of the PleC phosphatase and DivJ kinase localized at opposite cell poles control the phosphorylation state and subcellular localization of the cell fate determinator protein DivK. We show that DivK functions as an allosteric regulator that switches PleC from a phosphatase into an autokinase state and thereby mediates a cyclic di-GMP-dependent morphogenetic program. Through allosteric activation of the DivJ autokinase, DivK also stimulates its own phosphorylation and polar l...
Histidine kinases are key components of regulatory networks in bacteria. Although many of these enzy...
Sinorhizobium meliloti is a soil bacterium that invades the root nodules it induces on Medicago sati...
<div><p>Bacterial cells maintain sophisticated levels of intracellular organization that allow for s...
SummaryThe two-component phosphorylation network is of critical importance for bacterial growth and ...
AbstractThe polar localization of signaling proteins that are essential for Caulobacter cell cycle c...
SummaryCellular asymmetry is critical to metazoan development and the life cycle of many microbes. I...
<div><p>One of the simplest organisms to divide asymmetrically is the bacterium <i>Caulobacter cresc...
One of the simplest organisms to divide asymmetrically is the bacterium Caulobacter crescentus. The ...
Cellular asymmetry is critical to metazoan development and the life cycle of many microbes. In Caulo...
AbstractFor successful generation of different cell types by asymmetric cell division, cell differen...
Caulobacter crescentus divides asymmetrically into a swarmer cell and a stalked cell, a process that...
Histidine kinases DivJ and PleC initiate signal transduction pathways that regulate an early cell di...
<p>(A) A cartoon of <i>C. crescentus</i> asymmetric cell division and the spatiotemporal localizatio...
<div><p>Cell-fate asymmetry in the predivisional cell of <i>Caulobacter crescentus</i> requires that...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2011.Cataloged from PDF ve...
Histidine kinases are key components of regulatory networks in bacteria. Although many of these enzy...
Sinorhizobium meliloti is a soil bacterium that invades the root nodules it induces on Medicago sati...
<div><p>Bacterial cells maintain sophisticated levels of intracellular organization that allow for s...
SummaryThe two-component phosphorylation network is of critical importance for bacterial growth and ...
AbstractThe polar localization of signaling proteins that are essential for Caulobacter cell cycle c...
SummaryCellular asymmetry is critical to metazoan development and the life cycle of many microbes. I...
<div><p>One of the simplest organisms to divide asymmetrically is the bacterium <i>Caulobacter cresc...
One of the simplest organisms to divide asymmetrically is the bacterium Caulobacter crescentus. The ...
Cellular asymmetry is critical to metazoan development and the life cycle of many microbes. In Caulo...
AbstractFor successful generation of different cell types by asymmetric cell division, cell differen...
Caulobacter crescentus divides asymmetrically into a swarmer cell and a stalked cell, a process that...
Histidine kinases DivJ and PleC initiate signal transduction pathways that regulate an early cell di...
<p>(A) A cartoon of <i>C. crescentus</i> asymmetric cell division and the spatiotemporal localizatio...
<div><p>Cell-fate asymmetry in the predivisional cell of <i>Caulobacter crescentus</i> requires that...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2011.Cataloged from PDF ve...
Histidine kinases are key components of regulatory networks in bacteria. Although many of these enzy...
Sinorhizobium meliloti is a soil bacterium that invades the root nodules it induces on Medicago sati...
<div><p>Bacterial cells maintain sophisticated levels of intracellular organization that allow for s...