Overexpression of Calreticulin Increases the Ca2+ Capacity of Rapidly Exchanging Ca2+ Stores and Reveals Aspects of Their Lumenal Microenvironment and Function
Overview
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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 maintain its Ca2+ binding ability, whereas the expression of other ER proteins was unchanged. Ca2+ homeostasis in the transfected cells was investigated by three parallel approaches: (a) 45Ca equilibrium loading of cell populations; (b) [Ca2+]c measurement with fura-2 followed by quantitative immunocytochemistry of single cells and iii) [Ca2+]c measurement of cell population upon cotransfection with the Ca(2+)-sensitive photoprotein, aequorin. The three approaches revealed different aspects of Ca2+ homeostasis, yielding results which were largely complementary. In particular, the following conclusions were established: (a) both endogenous and transfected CR participate in Ca2+ buffering within the IP3-sensitive, rapidly exchanging, Ca2+ stores; the other pools of the cells were in contrast unaffected by CR transfection; (b) the Ca2+ capacity of the stores is not the main limiting factor of individual IP3-mediated Ca2+ release responses triggered by receptor agonists; (c) in control cells, the contribution of CR to Ca2+ buffering within the IP3-sensitive stores accounts for approximately 45% of the total, the rest being probably contributed by the other lumenal (and also membrane) Ca2+ binding proteins; (d) the free [Ca2+] within the lumen of the IP3-sensitive stores, revealed by the degree of Ca2+ binding to the transfected CR protein, amounts to values in (or approaching) the millimolar range; and (e) Ca2+ influx across the plasmalemma activated by depletion of the stores is directly dependent on the lumenal [Ca2+].
Okura G, Bharadwaj A, Waisman D Cancers (Basel). 2025; 17(2).
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Gogianu L, Ruta L, Farcasanu I Molecules. 2024; 29(23).
PMID: 39683786 PMC: 11643140. DOI: 10.3390/molecules29235627.
Bhuria V, Franz T, Baldauf C, Bottcher M, Chatain N, Koschmieder S Cell Commun Signal. 2024; 22(1):186.
PMID: 38509561 PMC: 10956330. DOI: 10.1186/s12964-024-01530-z.
Conte E, Dinoi G, Imbrici P, De Luca A, Liantonio A Cells. 2023; 12(5).
PMID: 36899851 PMC: 10000884. DOI: 10.3390/cells12050715.
Guo Q, Zheng J, Ba H, Sun H, Zhai J, Wang W Front Cell Dev Biol. 2022; 10:862841.
PMID: 35769266 PMC: 9235033. DOI: 10.3389/fcell.2022.862841.