The secretory-pathway Ca2+-ATPase SPCA1 is a thapsigargin-insensitive intracellular Ca2+ pump found mostly in the Golgi compartment. We have explored the contribution of this Ca2+ pump to cytosolic Ca2+ signaling in HeLa cells by using RNA-mediated interference to disrupt its expression. Removal of SPCA1 was confirmed by immunofluorescence with specific anti-SPCA1 antibodies. Measurements of the free Ca2+ concentration in the lumen of the Golgi apparatus by specifically targeting the Ca2+-sensitive luminescent protein aequorin to this organelle revealed that endogenous SPCA1 was responsible for Ca2+ uptake in a subfraction of the Golgi apparatus. HeLa cells lacking SPCA1 could still set up baseline Ca2+ spiking when stimulated with histamin...
The distribution of the secretory pathway Ca2+ -ATPase (SPCA1) was investigated at both the mRNA and...
The Golgi apparatus (GA) is a dynamic intracellular Ca2+ store endowed with complex Ca2+ homeostatic...
Intracellular (Ca2+) homeostasis is essential for cell signaling, proliferation and differentiation ...
The secretory-pathway Ca2+-ATPase SPCA1 is a thapsigargin-insensitive intracellular Ca2+ pump found ...
The Golgi apparatus (GA) is a dynamic store of Ca(2+) that can be released into the cell cytosol. It...
The Golgi apparatus (GA) is an intracellular organelle that plays a central role in lipid and protei...
The Golgi apparatus is, like the endoplasmic reticulum, an inositol-1,4,5-trisphosphate-sensitive Ca...
Taking advantage of a fluorescent Ca(2+) indicator selectively targeted to the trans-Golgi lumen, we...
Both the endoplasmic reticulum and the Golgi apparatus are agonist-sensitive intracellular Ca2+ stor...
Recent evidence highlights the functional importance of the Golgi apparatus as an agonist-sensitive ...
Mutations in the ubiquitously expressed secretory-pathway Ca(2+)-ATPase (SPCA1) Ca(2+) pump result i...
The Secretory Pathway Ca2+ ATPases SPCA1 and SPCA2 transport Ca2+ and Mn2+ into the Golgi and Secret...
The Golgi apparatus plays a central role in lipid and protein post-translational modification and so...
Extracellular agonists mobilize Ca2+ from SERCA-comprising intracellular Ca2+ stores located in both...
Secretory pathway Ca2+/Mn2+-ATPases (SPCAs) are important for maintenance of cellular Ca2+ and Mn2+ ...
The distribution of the secretory pathway Ca2+ -ATPase (SPCA1) was investigated at both the mRNA and...
The Golgi apparatus (GA) is a dynamic intracellular Ca2+ store endowed with complex Ca2+ homeostatic...
Intracellular (Ca2+) homeostasis is essential for cell signaling, proliferation and differentiation ...
The secretory-pathway Ca2+-ATPase SPCA1 is a thapsigargin-insensitive intracellular Ca2+ pump found ...
The Golgi apparatus (GA) is a dynamic store of Ca(2+) that can be released into the cell cytosol. It...
The Golgi apparatus (GA) is an intracellular organelle that plays a central role in lipid and protei...
The Golgi apparatus is, like the endoplasmic reticulum, an inositol-1,4,5-trisphosphate-sensitive Ca...
Taking advantage of a fluorescent Ca(2+) indicator selectively targeted to the trans-Golgi lumen, we...
Both the endoplasmic reticulum and the Golgi apparatus are agonist-sensitive intracellular Ca2+ stor...
Recent evidence highlights the functional importance of the Golgi apparatus as an agonist-sensitive ...
Mutations in the ubiquitously expressed secretory-pathway Ca(2+)-ATPase (SPCA1) Ca(2+) pump result i...
The Secretory Pathway Ca2+ ATPases SPCA1 and SPCA2 transport Ca2+ and Mn2+ into the Golgi and Secret...
The Golgi apparatus plays a central role in lipid and protein post-translational modification and so...
Extracellular agonists mobilize Ca2+ from SERCA-comprising intracellular Ca2+ stores located in both...
Secretory pathway Ca2+/Mn2+-ATPases (SPCAs) are important for maintenance of cellular Ca2+ and Mn2+ ...
The distribution of the secretory pathway Ca2+ -ATPase (SPCA1) was investigated at both the mRNA and...
The Golgi apparatus (GA) is a dynamic intracellular Ca2+ store endowed with complex Ca2+ homeostatic...
Intracellular (Ca2+) homeostasis is essential for cell signaling, proliferation and differentiation ...