scholarly journals Investigation of the Accompaniment of Calcium During Active Calcium Transport from Human Erythrocyte Ghosts

1974 ◽  
Vol 63 (5) ◽  
pp. 590-600 ◽  
Author(s):  
Erik J. Olson ◽  
Ralph J. Cazort

To determine whether a cell metabolite was involved in active calcium transport, the cell contents of human erythrocytes were subjected to high dilutions and the resultant ghosts were checked for their ability to actively transport calcium. It was found that the diluted erythrocyte ghosts did retain their capacity to actively transport calcium and that the characteristics of this transport process appeared to be unaltered by the high dilutions. Calcium analysis of the cell membrane and cell supernatant indicated that almost all of the calcium was lost from the cell solution rather than the cell membrane as active calcium transport proceeded. Therefore it appeared that calcium was able to cross the cell membrane without the aid of a cell metabolite. Investigations with layered erythrocytes indicated that the active transport of calcium was not assisted by centrifugation. Neither inorganic phosphate, pyrophosphate, nor an adenine nucleotide appeared to accompany calcium across the membrane as indicated by total phosphate and inorganic phosphate analysis and 260-nm readings of the deproteinized supernatant.

1992 ◽  
Vol 48 (3) ◽  
pp. 235-240 ◽  
Author(s):  
Alessandro Rubinacci ◽  
Paola Divieti ◽  
Stefano Lodigiani ◽  
Alessandro De Ponti ◽  
Michele Samaja

Physics Today ◽  
2010 ◽  
Vol 63 (9) ◽  
pp. 17-17
Author(s):  
Mark Wilson
Keyword(s):  

1967 ◽  
Vol 17 (2) ◽  
pp. 246-251 ◽  
Author(s):  
N.L. Gershfeld ◽  
R.J. Good
Keyword(s):  

1985 ◽  
Vol 82 (11) ◽  
pp. 3688-3692 ◽  
Author(s):  
D. A. Eppstein ◽  
Y. V. Marsh ◽  
M. van der Pas ◽  
P. L. Felgner ◽  
A. B. Schreiber

1999 ◽  
Vol 18 (5) ◽  
pp. 327-332 ◽  
Author(s):  
J V Calderón-Salinas ◽  
M A Quintanar-Escorcia ◽  
M T González-Martínez ◽  
C E Hernández-Luna

In this paper we report the lead (Pb) and calcium (Ca) uptake by erythrocyte ghosts. In both cases the transport was carried out by a passive transport system with two kinetic components (Michaelis-Menten and Hill). Pb and Ca were capable of inhibiting the transport of the other metal in a non-competitive way. Under hyperpolarization, the uptakes of Ca and Pb were enhanced and the Michaelis-Menten component prevailed. Both Ca and Pb uptakes were inhibited by N-ethyl-maleimide to the same extent. These results indicate that Pb and Ca share the same permeability pathway in human erythrocytes and that this transport system is electrogenic.


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