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The Journal of Clinical Investigation|June 1, 1985
Erythrocyte membrane rigidity induced by glycophorin A-ligand interaction. Evidence for a ligand-induced association between glycophorin A and skeletal proteinsJ A Chasis, N Mohandas, S B ShohetSeminars in Hematology|July 1, 1983
The influence of membrane skeleton on red cell deformability, membrane material properties, and shapeN Mohandas, J A Chasis, S B ShohetJournal of Lipid Research|March 1, 1971
The apparent transfer of fatty acid from phosphatidylcholine to phosphatidylethanolamine in human erythrocytesS B ShohetScandinavian Journal of Clinical and Laboratory Investigation. Supplementum|January 1, 1981
Possible roles for the membrane cytoskeleton in regulating red cell stability and deformabilityS B ShohetThe Journal of Clinical Investigation|September 1, 1970
Release of phospholipid fatty acid from human erythrocytesS B ShohetThe Journal of Clinical Investigation|August 1, 1979
Reconstitution of spectrin-deficient, spherocytic mouse erythrocyte membranesS B ShohetThe Journal of Cell Biology|August 1, 1986
Erythrocyte membrane deformability and stability: two distinct membrane properties that are independently regulated by skeletal protein associationsJ A Chasis, N MohandasSeminars in Hematology|July 1, 1993
Red blood cell deformability, membrane material properties and shape: regulation by transmembrane, skeletal and cytosolic proteins and lipidsN Mohandas, J A ChasisBlood|November 15, 1989
Membrane deformability and the capacity for shape change in the erythrocyteJ A Chasis, S L SchrierBlood|August 15, 1990
Relationship of the human erythrocyte Wrb antigen to an interaction between glycophorin A and band 3M J Telen, J A ChasisPageof 13