TY - JOUR
T1 - Pardaxin induces aggregation but not fusion of phosphatidylserine vesicles
AU - Lelkes, Peter I.
AU - Lazarovici, Philip
PY - 1988/3/28
Y1 - 1988/3/28
N2 - The effects on membranes of pardaxin, an amphipathic polypeptide, purified from the gland secretion of the Red Sea Moses sole flatfish Pardachirus marmoratus are dose-dependent and range from formation of voltage-gated, cation-selective pores to lysis. We have now investigated the interactions of pardaxin with small unilamellar liposomes. Light scattering showed that pardaxin (10-7-10-9M) mediated the aggregation of liposomes composed of phosphatidylserine but not of phosphatidylcholine. Aggregation of phosphatidylserine vesicles was impaired by vesicle depolarization. Furthermore, pardaxin-mediated aggregation between fluorescent-labeled PS vesicles was accompanied by leakage of the vesicle contents, and not by fusogenic process within the aggregates. We suggest that pardaxin is a unique polypeptide, that induces vesicle aggregation and membrane destabilization, but not membrane fusion; the mechanism of the aggregation activity of pardaxin is related to its amphipathic properties.
AB - The effects on membranes of pardaxin, an amphipathic polypeptide, purified from the gland secretion of the Red Sea Moses sole flatfish Pardachirus marmoratus are dose-dependent and range from formation of voltage-gated, cation-selective pores to lysis. We have now investigated the interactions of pardaxin with small unilamellar liposomes. Light scattering showed that pardaxin (10-7-10-9M) mediated the aggregation of liposomes composed of phosphatidylserine but not of phosphatidylcholine. Aggregation of phosphatidylserine vesicles was impaired by vesicle depolarization. Furthermore, pardaxin-mediated aggregation between fluorescent-labeled PS vesicles was accompanied by leakage of the vesicle contents, and not by fusogenic process within the aggregates. We suggest that pardaxin is a unique polypeptide, that induces vesicle aggregation and membrane destabilization, but not membrane fusion; the mechanism of the aggregation activity of pardaxin is related to its amphipathic properties.
KW - Pardaxin
KW - Phosphatidylserine aggregation
KW - Phosphatidylserine vesicle
UR - http://www.scopus.com/inward/record.url?scp=0023851691&partnerID=8YFLogxK
U2 - 10.1016/0014-5793(88)80656-2
DO - 10.1016/0014-5793(88)80656-2
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C2 - 2450781
AN - SCOPUS:0023851691
SN - 0014-5793
VL - 230
SP - 131
EP - 136
JO - FEBS Letters
JF - FEBS Letters
IS - 1-2
ER -