Mice deficient in the putative phospholipid flippase ATP11C exhibit altered erythrocyte shape, anemia, and reduced erythrocyte life span
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Yabas, Mehmet
Coupland, Lucy A
Cromer, Deborah
Winterberg, Markus
Teoh, Narci C
D'Rozario, James
Kirk, Kiaran
Bröer, Stefan
Parish, Christopher
Enders, Anselm
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American Society for Biochemistry and Molecular Biology
Abstract
Transmembrane lipid transporters are believed to establish and maintain phospholipid asymmetry in biological membranes; however, little is known about the in vivo function of the specific transporters involved. Here, we report that developing erythrocytes from mice lacking the putative phosphatidylserine flippase
ATP11Cshowed a lower rate ofPStranslocation in vitro compared with erythrocytes from wild-type littermates. Furthermore, the
mutant mice had an elevated percentage of phosphatidylserineexposing mature erythrocytes in the periphery. Although erythrocyte development in ATP11C-deficient mice was normal, the mature erythrocytes had an abnormal shape (stomatocytosis), and
the life span of mature erythrocytes was shortened relative to that in control littermates, resulting in anemia in the mutant mice. Thus, our findings uncover an essential role for ATP11C in erythrocyte
morphology and survival and provide a new candidate for the rare inherited blood disorder stomatocytosis with uncompensated
anemia.
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Journal of Biological Chemistry 289.28 (2014): 19531-19537