Ca2+ is a uniquely important messenger that penetrates into cells through gated channels to transmit signals to a large number of enzymes. The evolutionary choice of Ca2+ was dictated by its unusual chemical properties, which permit its reversible complexation by specific proteins in the presence of much larger amounts of other potentially competing cations. The decoding of the Ca2+ signal consists in two conformational changes of the complexing proteins, of which calmodulin is the most important. The first occurs when Ca2+ is bound, the second (a collapse of the elongated protein) when interaction with the targeted enzymes occurs. Soluble proteins such as calmodulin contribute to the buffering of cell Ca2+, but membrane intrinsic transport...
Calcium ions are the most ubiquitous and pluripotent signalling molecules, which regulate a wide arr...
Calcium ions are the most ubiquitous and pluripotent signalling molecules, which regulate a wide arr...
Calcium ions are the most ubiquitous and pluripotent signalling molecules, which regulate a wide arr...
Ca2+ is a uniquely important messenger that penetrates into cells through gated channels to transmit...
In the course of evolution, Ca2+ has emerged as the most versatile intracellular messenger. Its conc...
Ca2+ is a universal carrier of biological information: it controls cell life from its origin at fert...
Evolution has exploited the chemical properties of Ca(2+), which facilitate its reversible binding t...
Cellular signalling mechanisms are designed to transmit information from the cell surface membrane t...
Ca2+ is a universal carrier of biological information: it controls cell life from its origin at fert...
The calcium ion (Ca2+) is a versatile intracellular messenger. It provides dynamic regulation of vas...
Ca2+ is a universal second messenger controlling a wide variety of cellular reactions and adaptive r...
Calcium ions (Ca2+) impact nearly every aspect of cellular life. This review examines the principles...
Ca2+ is a universal second messenger controlling a wide variety of cellular reactions and adaptive r...
Calcium ions are the most ubiquitous and pluripotent cellular signaling molecules that control a wid...
Ionized calcium (Ca2+) is the most versatile cellular messenger. All cells use Ca2+ signals to regul...
Calcium ions are the most ubiquitous and pluripotent signalling molecules, which regulate a wide arr...
Calcium ions are the most ubiquitous and pluripotent signalling molecules, which regulate a wide arr...
Calcium ions are the most ubiquitous and pluripotent signalling molecules, which regulate a wide arr...
Ca2+ is a uniquely important messenger that penetrates into cells through gated channels to transmit...
In the course of evolution, Ca2+ has emerged as the most versatile intracellular messenger. Its conc...
Ca2+ is a universal carrier of biological information: it controls cell life from its origin at fert...
Evolution has exploited the chemical properties of Ca(2+), which facilitate its reversible binding t...
Cellular signalling mechanisms are designed to transmit information from the cell surface membrane t...
Ca2+ is a universal carrier of biological information: it controls cell life from its origin at fert...
The calcium ion (Ca2+) is a versatile intracellular messenger. It provides dynamic regulation of vas...
Ca2+ is a universal second messenger controlling a wide variety of cellular reactions and adaptive r...
Calcium ions (Ca2+) impact nearly every aspect of cellular life. This review examines the principles...
Ca2+ is a universal second messenger controlling a wide variety of cellular reactions and adaptive r...
Calcium ions are the most ubiquitous and pluripotent cellular signaling molecules that control a wid...
Ionized calcium (Ca2+) is the most versatile cellular messenger. All cells use Ca2+ signals to regul...
Calcium ions are the most ubiquitous and pluripotent signalling molecules, which regulate a wide arr...
Calcium ions are the most ubiquitous and pluripotent signalling molecules, which regulate a wide arr...
Calcium ions are the most ubiquitous and pluripotent signalling molecules, which regulate a wide arr...