The three-dimensional structure of the neuronal calcium-sensor protein calexcitin from Loligo pealei has been determined by X-ray analysis at a resolution of 1.8 angstrom. Calexcitin is up-regulated following Pavlovian conditioning and has been shown to regulate potassium channels and the ryanodine receptor. Thus, calexcitin is implicated in neuronal excitation and plasticity. The overall structure is predominantly helical and compact with a pronounced hydrophobic core between the N and C-terminal domains of the molecule. The structure consists of four EF-hand motifs although only the first three EF hands are involved in binding calcium ions; the C-terminal EF-hand lacks the amino acids required for calcium binding. The overall structure is...
Changes in the intracellular free calcium concentration ([Ca2+]i) in neurons regulates many and vari...
Caldendrin, L- and S-CaBP1 are CaM-like Ca2+-sensors with different N-termini that arise from altern...
AbstractChanges in intracellular free Ca2+ concentration ([Ca2+]i) affect many different aspects of ...
The three dimensional structure of the neuronal calcium-sensor protein calexcitin from Loligo pealei...
The protein calexcitin was originally identified in molluscan photoreceptor neurons as a 20 kDa mole...
Abstract: The protein calexcitin was originally identified in molluscan photoreceptor neurons as a 2...
Calexcitin was first identified in the marine snail Hermissenda crassicornis as a neuronal-specific ...
Calexcitin/cp20 is a low molecular weight GTP- and Ca2+-binding protein, which is phosphorylated by ...
Calexcitin (CE) is a calcium sensor protein that has been implicated in associative learning. The CE...
The neuronal protein calexcitin from the long-finned squid Loligo pealei has been expressed in Esche...
AbstractThe EF-hand family of calcium-binding proteins regulates cellular signal transduction events...
AbstractThe calcium sensor protein caldendrin is abundantly expressed in neurons and is thought to p...
Ca2+ signaling in neurons is characterized by highly restricted and dynamic gradients called Ca2+ wa...
The calmodulin (CaM)-like Ca2+-sensor proteins caldendrin, calneuron-1 and -2 are members of the neu...
The calcium sensor protein caldendrin is abundantly expressed in neurons and is thought to play an i...
Changes in the intracellular free calcium concentration ([Ca2+]i) in neurons regulates many and vari...
Caldendrin, L- and S-CaBP1 are CaM-like Ca2+-sensors with different N-termini that arise from altern...
AbstractChanges in intracellular free Ca2+ concentration ([Ca2+]i) affect many different aspects of ...
The three dimensional structure of the neuronal calcium-sensor protein calexcitin from Loligo pealei...
The protein calexcitin was originally identified in molluscan photoreceptor neurons as a 20 kDa mole...
Abstract: The protein calexcitin was originally identified in molluscan photoreceptor neurons as a 2...
Calexcitin was first identified in the marine snail Hermissenda crassicornis as a neuronal-specific ...
Calexcitin/cp20 is a low molecular weight GTP- and Ca2+-binding protein, which is phosphorylated by ...
Calexcitin (CE) is a calcium sensor protein that has been implicated in associative learning. The CE...
The neuronal protein calexcitin from the long-finned squid Loligo pealei has been expressed in Esche...
AbstractThe EF-hand family of calcium-binding proteins regulates cellular signal transduction events...
AbstractThe calcium sensor protein caldendrin is abundantly expressed in neurons and is thought to p...
Ca2+ signaling in neurons is characterized by highly restricted and dynamic gradients called Ca2+ wa...
The calmodulin (CaM)-like Ca2+-sensor proteins caldendrin, calneuron-1 and -2 are members of the neu...
The calcium sensor protein caldendrin is abundantly expressed in neurons and is thought to play an i...
Changes in the intracellular free calcium concentration ([Ca2+]i) in neurons regulates many and vari...
Caldendrin, L- and S-CaBP1 are CaM-like Ca2+-sensors with different N-termini that arise from altern...
AbstractChanges in intracellular free Ca2+ concentration ([Ca2+]i) affect many different aspects of ...