Inner workings and biological impact of phospholipid flippases

Publication date

2015-06-01

Authors

Panatala Narendranath, R.ISNI 000000041944877X
Hennrich, H.ISNI 0000000393439743
Holthuis, J.C.M.ISNI 0000000396231905

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Document Type

Article
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taverne

Abstract

The plasma membrane, trans-Golgi network and endosomal system of eukaryotic cells are populated with flippases that hydrolyze ATP to help establish asymmetric phospholipid distributions across the bilayer. Upholding phospholipid asymmetry is vital to a host of cellular processes, including membrane homeostasis, vesicle biogenesis, cell signaling, morphogenesis and migration. Consequently, defining the identity of flippases and their biological impact has been the subject of intense investigations. Recent work has revealed a remarkable degree of kinship between flippases and cation pumps. In this Commentary, we review emerging insights into how flippases work, how their activity is controlled according to cellular demands, and how disrupting flippase activity causes system failure of membrane function, culminating in membrane trafficking defects, aberrant signaling and disease.

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Citation

Panatala Narendranath, R, Hennrich, H & Holthuis, J C M 2015, 'Inner workings and biological impact of phospholipid flippases', Journal of Cell Science, vol. 128, no. 11, pp. 2021-2032. https://doi.org/10.1242/jcs.102715