Dissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic Pressure

Subunit interactions in the Ca2+-ATPase from erythrocyte plasma membranes were investigated through a combination of fluorescence spectroscopy and highpressure techniques. Application of hydrostatic pressure in the range of 1 bar to 2.4 kbar promoted full dissociation of the ATPase, as revealed by s...

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Published: 1991
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Online Access:http://hdl.handle.net/10872/15645
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bitstream.checksum.fl_str_mv 893faa57b197db593948b234728cab72
7c020282d630887ba819753d2e4a4c58
bitstream.checksumAlgorithm.fl_str_mv MD5
MD5
bitstream.url.fl_str_mv https://saber.ucv.ve/jspui/bitstream/10872/15645/1/Coelho-Sampaio%20et%20al%20JBC.pdf
https://saber.ucv.ve/jspui/bitstream/10872/15645/2/license.txt
dc.contributor.author.none.fl_str_mv Coelho-Sampaio, Tatiana
Ferreira, Sergio T.
Benaím, Gustavo
Vieyra, Adalberto
dc.creator.fl_str_mv Coelho-Sampaio, Tatiana
Ferreira, Sergio T.
Benaím, Gustavo
Vieyra, Adalberto
dc.date.accessioned.none.fl_str_mv 2017-04-07T15:25:14Z
dc.date.available.none.fl_str_mv 2017-04-07T15:25:14Z
dc.date.issued.none.fl_str_mv 1991
dc.identifier.issn.none.fl_str_mv 1083-351X
dc.identifier.uri.none.fl_str_mv http://hdl.handle.net/10872/15645
dc.language.iso.en_US.fl_str_mv en
dc.publisher.en_US.fl_str_mv THE JOURNAL OF BIOLOGICAL CHEMISTRY
dc.relation.ispartofseries.none.fl_str_mv Vol. 266;No. 3 pp 22266-22272
dc.subject.en_US.fl_str_mv erythrocyte plasma membranes
fluorescence spectroscopy
highpressure techniques
intrinsic fluorescence emission
fluorescence polarization
atmospheric pressure
dc.title.en_US.fl_str_mv Dissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic Pressure
dc.type.en_US.fl_str_mv Article
description Subunit interactions in the Ca2+-ATPase from erythrocyte plasma membranes were investigated through a combination of fluorescence spectroscopy and highpressure techniques. Application of hydrostatic pressure in the range of 1 bar to 2.4 kbar promoted full dissociation of the ATPase, as revealed by spectral shifts of the intrinsic fluorescence emission and by changes in the fluorescence polarization of dansyl-conjugated ATPase. Pressure dissociation of the ATPase displayed a dependence on protein concentration compatible with dissociation of a dimer. Calculated from pressure-dissociation curves, the standard volume change dVo for the association of subunits was 43-50 ml/mol and KO, the dissociation constant at atmospheric pressure, was 6-9 X l0-8 M. Addition of Ca2+ tabilized the dimeric ATPase structure against pressure dissociation, whereas addition of vanadate facilitated dissociation by pressure. These results suggest that intersubunit interactions depend on the equilibrium between the two major conformational states E1 and E2 of the ATPase. Addition of calmodulin in the presence of Ca2+ had no additional effect when compared to that observed in the presence of Ca2+a lone. This finding is interpreted in terms of the mechanism of Calmodulin activation of ATPase catalysis.
id SABERUCV_f1d59a17bbf77b8a0ea0ce4cc8bc28de
identifier_str_mv 1083-351X
language_invalid_str_mv en
network_acronym_str SABERUCV
network_name_str Repositorio Institucional de la Universidad Central de Venezuela
oai_identifier_str oai:saber.ucv.ve:10872/15645
publishDate 1991
publishDateSort 1991
repository.mail.fl_str_mv sfwrussians@gmail.com
repository.name.fl_str_mv Saber UCV
repository_id_str
spelling Coelho-Sampaio, TatianaFerreira, Sergio T.Benaím, GustavoVieyra, Adalberto2017-04-07T15:25:14Z2017-04-07T15:25:14Z19911083-351Xhttp://hdl.handle.net/10872/15645Subunit interactions in the Ca2+-ATPase from erythrocyte plasma membranes were investigated through a combination of fluorescence spectroscopy and highpressure techniques. Application of hydrostatic pressure in the range of 1 bar to 2.4 kbar promoted full dissociation of the ATPase, as revealed by spectral shifts of the intrinsic fluorescence emission and by changes in the fluorescence polarization of dansyl-conjugated ATPase. Pressure dissociation of the ATPase displayed a dependence on protein concentration compatible with dissociation of a dimer. Calculated from pressure-dissociation curves, the standard volume change dVo for the association of subunits was 43-50 ml/mol and KO, the dissociation constant at atmospheric pressure, was 6-9 X l0-8 M. Addition of Ca2+ tabilized the dimeric ATPase structure against pressure dissociation, whereas addition of vanadate facilitated dissociation by pressure. These results suggest that intersubunit interactions depend on the equilibrium between the two major conformational states E1 and E2 of the ATPase. Addition of calmodulin in the presence of Ca2+ had no additional effect when compared to that observed in the presence of Ca2+a lone. This finding is interpreted in terms of the mechanism of Calmodulin activation of ATPase catalysis.enTHE JOURNAL OF BIOLOGICAL CHEMISTRYVol. 266;No. 3 pp 22266-22272erythrocyte plasma membranesfluorescence spectroscopyhighpressure techniquesintrinsic fluorescence emissionfluorescence polarizationatmospheric pressureDissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic PressureArticleORIGINALCoelho-Sampaio et al JBC.pdfCoelho-Sampaio et al JBC.pdfapplication/pdf830848https://saber.ucv.ve/jspui/bitstream/10872/15645/1/Coelho-Sampaio%20et%20al%20JBC.pdf893faa57b197db593948b234728cab72MD51LICENSElicense.txtlicense.txttext/plain; charset=utf-81509https://saber.ucv.ve/jspui/bitstream/10872/15645/2/license.txt7c020282d630887ba819753d2e4a4c58MD5210872/15645oai:saber.ucv.ve:10872/156452017-04-25 19:13:36.865Saber UCVsfwrussians@gmail.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
spellingShingle Dissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic Pressure
erythrocyte plasma membranes
fluorescence spectroscopy
highpressure techniques
intrinsic fluorescence emission
fluorescence polarization
atmospheric pressure
title Dissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic Pressure
title_full Dissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic Pressure
title_fullStr Dissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic Pressure
title_full_unstemmed Dissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic Pressure
title_short Dissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic Pressure
title_sort Dissociation of Purified Erythrocyte Ca2+-ATPaseb y Hydrostatic Pressure
topic erythrocyte plasma membranes
fluorescence spectroscopy
highpressure techniques
intrinsic fluorescence emission
fluorescence polarization
atmospheric pressure
url http://hdl.handle.net/10872/15645