Increasing evidence implicates Ca(2+)in the control of cell migration. However, the underlying mechanisms are incompletely understood. Acidic Ca(2+)stores are fast emerging as signaling centers. But how Ca(2+)is taken up by these organelles in metazoans and the physiological relevance for migration is unclear. Here, we identify a vertebrate Ca(2+)/H(+)exchanger (CAX) as part of a widespread family of homologues in animals. CAX is expressed in neural crest cells and required for their migration in vivo. It localizes to acidic organelles, tempers evoked Ca(2+)signals, and regulates cell-matrix adhesion during migration. Our data provide new molecular insight into how Ca(2+)is handled by acidic organelles and link this to migration, thereby un...
Evolution has exploited the chemical properties of Ca(2+), which facilitate its reversible binding t...
Cell motility is a complex cellular event that involves reorganization of cytoskeleton. This reorgan...
Calcium ions (Ca2+) impact nearly every aspect of cellular life. This review examines the principles...
Much contemporary evidence underscores the pathophysiological importance of Ca2+ handling by acidic ...
Much contemporary evidence underscores the pathophysiological importance of Ca2+ handling by acidic ...
Acidic Ca2+ stores are important sources of Ca2+ during cell signaling but little is known about how...
Acidic Ca2+ stores are important sources of Ca2+ during cell signaling but little is known about how...
Rapid and local changes in the concentration of calcium ions can have a dramatic impact on signaling...
Proper control of Ca2+ signaling is mandatory for effective cell migration, which is critical for em...
AbstractNumerous studies show that intracellular calcium controls the migration rate of different mo...
Proper control of Ca2+ signaling is mandatory for effective cell migration, which is critical for em...
An increase in the concentration of cytosolic free Ca(2+) is a key component regulating different ce...
An increase in the concentration of cytosolic free Ca(2+) is a key component regulating different ce...
AbstractNumerous hormones and neurotransmitters activate cells by increasing cytosolic calcium conce...
Copyright © 2015 Feng-Chiao Tsai et al.This is an open access article distributed under theCreativeC...
Evolution has exploited the chemical properties of Ca(2+), which facilitate its reversible binding t...
Cell motility is a complex cellular event that involves reorganization of cytoskeleton. This reorgan...
Calcium ions (Ca2+) impact nearly every aspect of cellular life. This review examines the principles...
Much contemporary evidence underscores the pathophysiological importance of Ca2+ handling by acidic ...
Much contemporary evidence underscores the pathophysiological importance of Ca2+ handling by acidic ...
Acidic Ca2+ stores are important sources of Ca2+ during cell signaling but little is known about how...
Acidic Ca2+ stores are important sources of Ca2+ during cell signaling but little is known about how...
Rapid and local changes in the concentration of calcium ions can have a dramatic impact on signaling...
Proper control of Ca2+ signaling is mandatory for effective cell migration, which is critical for em...
AbstractNumerous studies show that intracellular calcium controls the migration rate of different mo...
Proper control of Ca2+ signaling is mandatory for effective cell migration, which is critical for em...
An increase in the concentration of cytosolic free Ca(2+) is a key component regulating different ce...
An increase in the concentration of cytosolic free Ca(2+) is a key component regulating different ce...
AbstractNumerous hormones and neurotransmitters activate cells by increasing cytosolic calcium conce...
Copyright © 2015 Feng-Chiao Tsai et al.This is an open access article distributed under theCreativeC...
Evolution has exploited the chemical properties of Ca(2+), which facilitate its reversible binding t...
Cell motility is a complex cellular event that involves reorganization of cytoskeleton. This reorgan...
Calcium ions (Ca2+) impact nearly every aspect of cellular life. This review examines the principles...