Isolation of Transport-Competent Secretory Vesicles fromSaccharomyces cerevisiae
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry,Biophysics
Reference10 articles.
1. Expression of the yeast plasma membrane [H+]ATPase in secretory vesicles. A new strategy for directed mutagenesis.
2. Alanine-scanning Mutagenesis along Membrane Segment 4 of the Yeast Plasma Membrane H+-ATPase EFFECTS ON STRUCTURE AND FUNCTION
3. Mutagenesis of conserved residues in the phosphorylation domain of the yeast plasma membrane H(+)-ATPase. Effects on structure and function.
4. Site-directed Mutagenesis of the Yeast PMA1 H+-ATPase STRUCTURAL AND FUNCTIONAL ROLE OF CYSTEINE RESIDUES
5. Functional expression of P-glycoproteins in secretory vesicles.
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1. Comparative chemical genomics reveal that the spiroindolone antimalarial KAE609 (Cipargamin) is a P-type ATPase inhibitor;Scientific Reports;2016-06
2. C-Terminal Truncations of the Saccharomyces cerevisiae PMA1 H+-ATPase Have Major Impacts on Protein Conformation, Trafficking, Quality Control, and Function;Eukaryotic Cell;2013-11-01
3. Structure–function relationships in membrane segment 6 of the yeast plasma membrane Pma1 H+-ATPase;Biochimica et Biophysica Acta (BBA) - Biomembranes;2011-07
4. Role of transmembrane segment M8 in the biogenesis and function of yeast plasma-membrane H+-ATPase;Biochimica et Biophysica Acta (BBA) - Biomembranes;2007-10
5. Effects of C-terminal Truncations on Trafficking of the Yeast Plasma Membrane H+-ATPase;Journal of Biological Chemistry;2006-08
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