共 34 条
Influence of the Physical State of Phospholipid Monolayers on Protein Binding
被引:51
作者:
Boisselier, Elodie
Calvez, Philippe
Demers, Eric
Cantin, Line
Salesse, Christian
[1
]
机构:
[1] Univ Laval, LOEX CUO Rech, Hop St Sacrement, Ctr Hosp Affilie Quebec, Laval, PQ G1S 4L8, Canada
来源:
基金:
加拿大自然科学与工程研究理事会;
关键词:
LANGMUIR MONOLAYERS;
DETERGENT-RESISTANT;
PHASE-TRANSITIONS;
LIPID MONOLAYERS;
DOMAIN FORMATION;
BREWSTER-ANGLE;
MEMBRANE;
TEMPERATURE;
MICROSCOPY;
PEPTIDES;
D O I:
10.1021/la301135z
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Langmuir monolayers were used to characterize the influence of the physical state of phospholipid monolayers on the binding of protein Retinis Pigmentosa 2 (RP2). The binding parameters of RP2 (maximum insertion pressure (MIP), synergy and Delta Pi(0)) in monolayers were thus analyzed in the presence of phospholipids bearing increasing fatty acyl chain lengths at temperatures where their liquid-expanded (LE), liquid-condensed (LC), or solid-condensed (SC) states can be individually observed. E The data show that a larger value of synergy is observed in the LC/SC states than in the LE state, independent of the fatty acyl chain length of phospholipids. Moreover, both the MIP and the Lambda Pi(0) increase with the fatty acyl chain length when phospholipids are in the LC/SC state, whereas those binding parameters remain almost unchanged when phospholipids are in the LE state. This effect of the phospholipid physical state on the binding of RP2 was further demonstrated by measurements performed in the presence of a phospholipid monolayer showing a phase transition from the LE to the LC state at room temperature. The data collected are showing that very similar values of MIP but very different values of synergy and Delta Pi(0) are obtained in the LE (below the phase transition) and LC (above the phase transition) states. In addition, the binding parameters of RP2 in the LE (below the phase transition) as well as in the LC (above the phase transition) states were found to be indistinguishable from those where single LC and LE states are respectively observed. The preference of RP2 for binding phospholipids in the LC state was then confirmed by the observation of a large modification of the shape of the LC domains in the phase transition. Therefore, protein binding parameters can be strongly influenced by the physical state of phospholipid monolayers. Moreover, measurements performed with the alpha/beta domain of RP2 strongly suggest that the beta helix of RP2 plays a major role in the preferential binding of this protein to phospholipids in the LC state.
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页码:9680 / 9688
页数:9
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