A molecularly tagged form of calreticulin (CR), a low affinity-high capacity Ca2+ binding protein that resides in the ER lumen, was transiently transfected into HeLa cells to specifically modify the Ca2+ buffering capacity of the intracellular Ca2+ stores. Fluorescence and confocal microscope immunocytochemistry revealed the tagged protein to be expressed by over 40% of the cells and to overlap in its distribution the endogenous CR yielding a delicate cytoplasmic network, i.e., the typical pattern of ER. In contrast, no signal was observed associated with the plasmalemma (marked by ConA) and within the nucleus. One- and two-dimensional Western blots revealed the transfected to exceed the endogenous CR of approximately 3.5-fold and to mainta...
AbstractCalreticulin is a lectin chaperone essential for intracellular calcium homeostasis. Deletion...
A robust mathematical model developed from single cell calcium (Ca2+) dynamics has enabled us to pre...
AbstractA robust mathematical model developed from single cell calcium (Ca2+) dynamics has enabled u...
A molecularly tagged form of calreticulin (CR), a low affinity-high capacity Ca2+ binding protein th...
Calreticulin is a Ca2+ binding protein located primarily in the endoplasmic reticulum (ER) lumen of ...
The widely distributed and highly conserved Ca(2+)-binding protein calreticulin has been suggested t...
To study the role of calreticulin in Ca(2+) homeostasis and apoptosis, we generated cells inducible ...
Calreticulin (CRT) is a high-capacity, low-affinity Ca2+-binding protein located in the lumen of the...
Calreticulin was first isolated 26 years ago. Since its discovery as a minor Ca(2+)-binding protein ...
Calreticulin is now considered to be a multifunctional Ca2+-binding protein. Its primary role is as ...
Calreticulin (CALR) is a Ca(2+)-binding protein that shuttles among cellular compartments with prote...
AbstractThe multi-functional protein calreticulin (CRT) is normally found within the lumen of the en...
Calreticulin (CALR) is a Ca2+ binding multifunctional protein that mostly resides in the endoplasmic...
Some chemotherapeutic agents can elicit apoptotic cancer cell death, thereby activating an anticance...
The multi-functional protein calreticulin (CRT) is normally found within the lumen of the endoplasmi...
AbstractCalreticulin is a lectin chaperone essential for intracellular calcium homeostasis. Deletion...
A robust mathematical model developed from single cell calcium (Ca2+) dynamics has enabled us to pre...
AbstractA robust mathematical model developed from single cell calcium (Ca2+) dynamics has enabled u...
A molecularly tagged form of calreticulin (CR), a low affinity-high capacity Ca2+ binding protein th...
Calreticulin is a Ca2+ binding protein located primarily in the endoplasmic reticulum (ER) lumen of ...
The widely distributed and highly conserved Ca(2+)-binding protein calreticulin has been suggested t...
To study the role of calreticulin in Ca(2+) homeostasis and apoptosis, we generated cells inducible ...
Calreticulin (CRT) is a high-capacity, low-affinity Ca2+-binding protein located in the lumen of the...
Calreticulin was first isolated 26 years ago. Since its discovery as a minor Ca(2+)-binding protein ...
Calreticulin is now considered to be a multifunctional Ca2+-binding protein. Its primary role is as ...
Calreticulin (CALR) is a Ca(2+)-binding protein that shuttles among cellular compartments with prote...
AbstractThe multi-functional protein calreticulin (CRT) is normally found within the lumen of the en...
Calreticulin (CALR) is a Ca2+ binding multifunctional protein that mostly resides in the endoplasmic...
Some chemotherapeutic agents can elicit apoptotic cancer cell death, thereby activating an anticance...
The multi-functional protein calreticulin (CRT) is normally found within the lumen of the endoplasmi...
AbstractCalreticulin is a lectin chaperone essential for intracellular calcium homeostasis. Deletion...
A robust mathematical model developed from single cell calcium (Ca2+) dynamics has enabled us to pre...
AbstractA robust mathematical model developed from single cell calcium (Ca2+) dynamics has enabled u...