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Slow Phospholipid Exchange between a Detergent-Solubilized Membrane Protein and Lipid-Detergent Mixed Micelles: Brominated Phospholipids as Tools to Follow Its Kinetics

机译:溶解剂溶解的膜蛋白与脂类混合胶束之间的磷脂交换缓慢:溴化磷脂作为遵循其动力学的工具

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摘要

Membrane proteins are largely dependent for their function on the phospholipids present in their immediate environment, and when they are solubilized by detergent for further study, residual phospholipids are critical, too. Here, brominated phosphatidylcholine, a phospholipid which behaves as an unsaturated phosphatidylcholine, was used to reveal the kinetics of phospholipid exchange or transfer from detergent mixed micelles to the environment of a detergent-solubilized membrane protein, the paradigmatic P-type ATPase SERCA1a, in which Trp residues can experience fluorescence quenching by bromine atoms present on phospholipid alkyl chains in their immediate environment. Using dodecylmaltoside as the detergent, exchange of (brominated) phospholipid was found to be much slower than exchange of detergent under the same conditions, and also much slower than membrane solubilization, the latter being evidenced by light scattering changes. The kinetics of this exchange was strongly dependent on temperature. It was also dependent on the total concentration of the mixed micelles, revealing the major role for such exchange of the collision of detergent micelles with the detergent-solubilized protein. Back-transfer of the brominated phospholipid from the solubilized protein to the detergent micelle was much faster if lipid-free DDM micelles instead of mixed micelles were added for triggering dissociation of brominated phosphatidylcholine from the solubilized protein, or in the additional presence of C12E8 detergent during exchange, also emphasizing the role of the chemical nature of the micelle/protein interface. This protocol using brominated lipids appears to be valuable for revealing the possibly slow kinetics of phospholipid transfer to or from detergent-solubilized membrane proteins. Independently, continuous recording of the activity of the protein can also be used in some cases to correlate changes in activity with the exchange of a specific phospholipid, as shown here by using the Drs2p/Cdc50p complex, a lipid flippase with specific binding sites for lipids.
机译:膜蛋白在很大程度上取决于其周围环境中存在的磷脂的功能,并且当它们被去垢剂溶解以进行进一步研究时,残留的磷脂也是至关重要的。在这里,溴化磷脂酰胆碱(一种表现为不饱和磷脂酰胆碱的磷脂)被用来揭示磷脂交换或从去污剂混合的胶束转移到去污剂可溶解的膜蛋白(典型的P型ATPase SERCA1a)环境中的动力学。 Trp残基可通过其紧邻环境中的磷脂烷基链上的溴原子经历荧光猝灭。使用十二烷基麦芽糖苷作为去污剂,发现(溴化)磷脂的交换比在相同条件下去污剂的交换要慢得多,并且也比膜增溶要慢得多,后者的光散射变化证明了这一点。这种交换的动力学很大程度上取决于温度。它还取决于混合胶束的总浓度,揭示了清洁剂胶束与清洁剂溶解的蛋白质之间的这种碰撞交换的主要作用。如果添加无脂质的DDM胶束而不是混合胶束来引发溴化磷脂酰胆碱从溶解蛋白中解离,或者在添加C12E8洗涤剂的过程中,溴化磷脂从溶解蛋白向洗涤剂胶束的反向转移要快得多。交换,也强调了胶束/蛋白质界面化学性质的作用。该使用溴化脂质的方案对于揭示磷脂与去污剂溶解的膜蛋白之间转移的可能缓慢的动力学似乎很有价值。独立地,蛋白质活性的连续记录在某些情况下也可以用于使活性变化与特定磷脂的交换相关,如此处所示,通过使用Drs2p / Cdc50p复合物(具有脂类特异性结合位点的脂类脂酶) 。

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