Functional comparison of wild type human secretory pathway Ca2+/Mn2+ ATPase with Hailey Hailey disease mutants

Bibliographic Details
Main Authors: Fairclough, R, Dode, L, Vanocvelen, J, Monaco, A, Missiaen, L, Raeymaekers, L, Wuytack, F, Hovnanian, A
Format: Conference item
Published: 2002
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author Fairclough, R
Dode, L
Vanocvelen, J
Monaco, A
Missiaen, L
Raeymaekers, L
Wuytack, F
Hovnanian, A
author_facet Fairclough, R
Dode, L
Vanocvelen, J
Monaco, A
Missiaen, L
Raeymaekers, L
Wuytack, F
Hovnanian, A
author_sort Fairclough, R
collection OXFORD
description
first_indexed 2024-03-06T22:19:05Z
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id oxford-uuid:546a6937-6186-4fc2-8ac2-ddbefa1acc0c
institution University of Oxford
last_indexed 2024-03-06T22:19:05Z
publishDate 2002
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spelling oxford-uuid:546a6937-6186-4fc2-8ac2-ddbefa1acc0c2022-03-26T16:37:43ZFunctional comparison of wild type human secretory pathway Ca2+/Mn2+ ATPase with Hailey Hailey disease mutantsConference itemhttp://purl.org/coar/resource_type/c_5794uuid:546a6937-6186-4fc2-8ac2-ddbefa1acc0cSymplectic Elements at Oxford2002Fairclough, RDode, LVanocvelen, JMonaco, AMissiaen, LRaeymaekers, LWuytack, FHovnanian, A
spellingShingle Fairclough, R
Dode, L
Vanocvelen, J
Monaco, A
Missiaen, L
Raeymaekers, L
Wuytack, F
Hovnanian, A
Functional comparison of wild type human secretory pathway Ca2+/Mn2+ ATPase with Hailey Hailey disease mutants
title Functional comparison of wild type human secretory pathway Ca2+/Mn2+ ATPase with Hailey Hailey disease mutants
title_full Functional comparison of wild type human secretory pathway Ca2+/Mn2+ ATPase with Hailey Hailey disease mutants
title_fullStr Functional comparison of wild type human secretory pathway Ca2+/Mn2+ ATPase with Hailey Hailey disease mutants
title_full_unstemmed Functional comparison of wild type human secretory pathway Ca2+/Mn2+ ATPase with Hailey Hailey disease mutants
title_short Functional comparison of wild type human secretory pathway Ca2+/Mn2+ ATPase with Hailey Hailey disease mutants
title_sort functional comparison of wild type human secretory pathway ca2 mn2 atpase with hailey hailey disease mutants
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