Regulation of Ca2+ transport is vital in physiological processes, including lactation, proliferation and apoptosis. The plasmalemmal Ca2+ pump isoform 2 (PMCA2) a calcium ion efflux pump, was the first protein identified to be crucial in the transport of Ca2+ ions into milk during lactation in mice. In these studies we show that PMCA2 is also expressed in human epithelia undergoing lactational remodeling and also report strong PMCA2 staining on apical membranes of luminal epithelia in approximately 9% of human breast cancers we assessed. Membrane protein expression was not significantly associated with grade or hormone receptor status. However, PMCA2 mRNA levels were enriched in Basal breast cancers where it was positively correlated with s...
Abstract Background Remodeling of Ca2+ signaling is an important step in cancer progression, and alt...
Cancer is caused by defects in the signalling mechanisms that govern cell proliferation and apoptosi...
Intracellular (Ca2+) homeostasis is essential for cell signaling, proliferation and differentiation ...
Regulation of Ca2+ transport is vital in physiological processes, including lactation, proliferation...
There is evidence to suggest that plasma membrane Ca2+-ATPase (PMCA) isoforms are important mediator...
The plasma membrane calcium pump (PMCA) is an important transporter that maintains intracellular cal...
The plasma membrane calcium ATPases (PMCAs) are vital regulators of basal Ca(2+) and shape the natur...
The enrichment of milk with calcium is critical for the survival of mammals after birth. The process...
Calcium transporters play vital roles in the transport of calcium ions across cells of the mammary g...
Intracellular calcium levels must be tightly controlled to maintain intracellular homeostasis; a pro...
Alterations in calcium signaling and/or the expression of calcium pumps and channels are an increasi...
Alterations in Ca2+ signaling may contribute to tumorigenesis and the mechanism of action of some an...
Calcium (Ca2+) is an indispensable intracellular second messenger, essential for cellular life and d...
Breast cancer is the second leading cause of cancer mortality in women, estimated at nearly 40,000 d...
PMCA2 overexpression in some breast cancers suggests that this calcium pump isoform may play a role ...
Abstract Background Remodeling of Ca2+ signaling is an important step in cancer progression, and alt...
Cancer is caused by defects in the signalling mechanisms that govern cell proliferation and apoptosi...
Intracellular (Ca2+) homeostasis is essential for cell signaling, proliferation and differentiation ...
Regulation of Ca2+ transport is vital in physiological processes, including lactation, proliferation...
There is evidence to suggest that plasma membrane Ca2+-ATPase (PMCA) isoforms are important mediator...
The plasma membrane calcium pump (PMCA) is an important transporter that maintains intracellular cal...
The plasma membrane calcium ATPases (PMCAs) are vital regulators of basal Ca(2+) and shape the natur...
The enrichment of milk with calcium is critical for the survival of mammals after birth. The process...
Calcium transporters play vital roles in the transport of calcium ions across cells of the mammary g...
Intracellular calcium levels must be tightly controlled to maintain intracellular homeostasis; a pro...
Alterations in calcium signaling and/or the expression of calcium pumps and channels are an increasi...
Alterations in Ca2+ signaling may contribute to tumorigenesis and the mechanism of action of some an...
Calcium (Ca2+) is an indispensable intracellular second messenger, essential for cellular life and d...
Breast cancer is the second leading cause of cancer mortality in women, estimated at nearly 40,000 d...
PMCA2 overexpression in some breast cancers suggests that this calcium pump isoform may play a role ...
Abstract Background Remodeling of Ca2+ signaling is an important step in cancer progression, and alt...
Cancer is caused by defects in the signalling mechanisms that govern cell proliferation and apoptosi...
Intracellular (Ca2+) homeostasis is essential for cell signaling, proliferation and differentiation ...