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  1. 1

    Organellar calcium pumps of the golgi and ER from yeast to human /

    Published 2007
    Table of Contents: “…-- Yeast as a model to understand Golgi Calcium pumps -- Biochemical characterization of Calcium and Mn2+ transport -- Phenotype screening in yeast to identify residues important for ion transport and selectivity in Pmr1 -- Structural and homology models of Calcium-ATPases -- Golgi pumps in mammals -- From structure to physiology -- Haploinsufficiency of ATP2C1 leads to Hailey Hailey disease -- Insights from yeast -- Distribution and localization of SPCA1 and SPCA2.…”
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    Electronic Video
  2. 2

    Organellar calcium pumps of the golgi and ER from yeast to human /

    Published 2007
    Table of Contents: “…-- Yeast as a model to understand Golgi Calcium pumps -- Biochemical characterization of Calcium and Mn2+ transport -- Phenotype screening in yeast to identify residues important for ion transport and selectivity in Pmr1 -- Structural and homology models of Calcium-ATPases -- Golgi pumps in mammals -- From structure to physiology -- Haploinsufficiency of ATP2C1 leads to Hailey Hailey disease -- Insights from yeast -- Distribution and localization of SPCA1 and SPCA2.…”
    Get full text
    Series
    Electronic Video
  3. 3

    Organellar calcium pumps of the golgi and ER from yeast to human /

    Published 2007
    Table of Contents: “…-- Yeast as a model to understand Golgi Calcium pumps -- Biochemical characterization of Calcium and Mn2+ transport -- Phenotype screening in yeast to identify residues important for ion transport and selectivity in Pmr1 -- Structural and homology models of Calcium-ATPases -- Golgi pumps in mammals -- From structure to physiology -- Haploinsufficiency of ATP2C1 leads to Hailey Hailey disease -- Insights from yeast -- Distribution and localization of SPCA1 and SPCA2.…”
    Get full text
    Series
    Electronic Video