PLoS Genetics · 2015 · 44 citations · 80 references
Proteinlipid InteractionEngineeringStationary PhaseBacteriologyMolecular BiologyCytoskeletonSignaling NetworksBiological NetworkProkaryotic SystemLipid RaftsMembrane ComputingComplex Biological SystemMembrane BiologyMolecular MicrobiologyMulticellular SystemPattern FormationSignal TransductionSynthetic BiologySpatio-temporal RemodelingMicrobiologyCellular BiochemistrySystems BiologyMedicine
Lipid rafts are membrane microdomains specialized in the regulation of numerous cellular processes related to membrane organization, as diverse as signal transduction, protein sorting, membrane trafficking or pathogen invasion. It has been proposed that this functional diversity would require a heterogeneous population of raft domains with varying compositions. However, a mechanism for such diversification is not known. We recently discovered that bacterial membranes organize their signal transduction pathways in functional membrane microdomains (FMMs) that are structurally and functionally similar to the eukaryotic lipid rafts. In this report, we took advantage of the tractability of the prokaryotic model Bacillus subtilis to provide evidence for the coexistence of two distinct families of FMMs in bacterial membranes, displaying a distinctive distribution of proteins specialized in different biological processes. One family of microdomains harbors the scaffolding flotillin protein FloA that selectively tethers proteins specialized in regulating cell envelope turnover and primary metabolism. A second population of microdomains containing the two scaffolding flotillins, FloA and FloT, arises exclusively at later stages of cell growth and specializes in adaptation of cells to stationary phase. Importantly, the diversification of membrane microdomains does not occur arbitrarily. We discovered that bacterial cells control the spatio-temporal remodeling of microdomains by restricting the activation of FloT expression to stationary phase. This regulation ensures a sequential assembly of functionally specialized membrane microdomains to strategically organize signaling networks at the right time during the lifespan of a bacterium.
80
Mutation of the mouse klotho gene leads to a syndrome resembling ageing.
PubMed · 1997 · 66.5K citations
Functional rafts in cell membranes
Kai Simons, Elina Ikonen · Nature · 1997 · 9.6K citations
Imaging Intracellular Fluorescent Proteins at Nanometer Resolution
Eric Betzig, George H. Patterson, Rachid Sougrat et al. · Science · 2006 · 8.7K citations
Lipid Rafts As a Membrane-Organizing Principle
Daniel Lingwood, Kai Simons · Science · 2009 · 4.3K citations