Perceiving environmental and internal information and reacting in adaptive ways are essential attributes of living organisms. Two-component systems are relevant protein machineries from prokaryotes and lower eukaryotes that enable cells to sense and process signals. Implicating sensory histidine kinases and response regulator proteins, both components take advantage of protein phosphorylation and flexibility to switch conformations in a signal-dependent way. Dozens of two component systems act simultaneously in any given cell, challenging our understanding about the means that ensure proper connectivity. This review dives into the molecular level, attempting to summarize an emerging picture of how histidine kinases and cognate response regu...
Two-component signal systems serve as basic stimulus-response coupling mechanism to allow organisms ...
This work focuses on a structure and a function of prokaryotic signal systems. There are three types...
Two-component systems (TCS) are protein machineries that enable cells to respond to input signals. H...
The ability to perceive the environment, an essential attribute in living organisms, is linked to th...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
Two-component signal transduction systems (TCSs) are widely conserved in bacteria to respond to and ...
Sensing environmental changes and responding to them is the key to any organism’s survival. The simp...
Sensing environmental changes and responding to them is the key to any organism’s survival. The simp...
The two-component system is a cellular signaling module com-posed of two proteins, a sensor histidin...
International audienceTwo-component systems (TCS) are protein machineries that enable cells to respo...
Cellular signaling systems transmit information over long distances using allosteric transitions and...
Two-component systems (TCS) are protein machineries that enable cells to respond to input signals. H...
The phosphorylation of histidine is the first step in many signal transduction cascades in bacteria,...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
Two-component signal systems serve as basic stimulus-response coupling mechanism to allow organisms ...
This work focuses on a structure and a function of prokaryotic signal systems. There are three types...
Two-component systems (TCS) are protein machineries that enable cells to respond to input signals. H...
The ability to perceive the environment, an essential attribute in living organisms, is linked to th...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
Two-component signal transduction systems (TCSs) are widely conserved in bacteria to respond to and ...
Sensing environmental changes and responding to them is the key to any organism’s survival. The simp...
Sensing environmental changes and responding to them is the key to any organism’s survival. The simp...
The two-component system is a cellular signaling module com-posed of two proteins, a sensor histidin...
International audienceTwo-component systems (TCS) are protein machineries that enable cells to respo...
Cellular signaling systems transmit information over long distances using allosteric transitions and...
Two-component systems (TCS) are protein machineries that enable cells to respond to input signals. H...
The phosphorylation of histidine is the first step in many signal transduction cascades in bacteria,...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
Two-component signal systems serve as basic stimulus-response coupling mechanism to allow organisms ...
This work focuses on a structure and a function of prokaryotic signal systems. There are three types...
Two-component systems (TCS) are protein machineries that enable cells to respond to input signals. H...