Enhancement of endocytosis due to aminophospholipid transport across the plasma membrane of living cells.

نویسندگان

  • Emmanuel Farge
  • David M Ojcius
  • Agathe Subtil
  • Alice Dautry-Varsat
چکیده

Formation of intracellular vesicles is initiated by membrane budding. Here we test the hypothesis that the plasma membrane surface area asymmetry could be a driving force for vesicle formation during endocytosis. The inner layer phospholipid number was therefore increased by adding exogenous aminophospholipids to living cells, which were then translocated from the outer to the inner layer of the membrane by the ubiquitous flippase. Addition of either phosphatidylserine or phosphatidylethanolamine led to an enhancement of endocytosis, showing that the observed acceleration does not depend on the lipid polar head group. Conversely, a closely related aminophospholipid that is not recognized by the flippase, lyso-α-phosphatidylserine, inhibited endocytosis, and similar results were obtained with a cholesterol derivative that also remains in the plasma membrane outer layer. Thus an increase of lipid concentration in the inner layer enhanced internalization, whereas an increase of the lipid concentration in the outer layer inhibited internalization. These experiments suggest that transient asymmetries in lipid concentration might contribute to the formation of endocytic vesicles.

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منابع مشابه

ACELL Mar. 45/3

Farge, Emmanuel, David M. Ojcius, Agathe Subtil, and Alice Dautry-Varsat. Enhancement of endocytosis due to aminophospholipid transport across the plasma membrane of living cells. Am. J. Physiol. 276 (Cell Physiol. 45): C725– C733, 1999.—Formation of intracellular vesicles is initiated by membrane budding. Here we test the hypothesis that the plasma membrane surface area asymmetry could be a dr...

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عنوان ژورنال:
  • American journal of physiology. Cell physiology

دوره 276 3  شماره 

صفحات  -

تاریخ انتشار 1999