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筏状膜中 Fas 跨膜结构域的组织和动力学及其被神经酰胺的调节

Organization and dynamics of Fas transmembrane domain in raft membranes and modulation by ceramide.

机构信息

Centro de Química Física-Molecular and Institute of Nanoscience and Nanotechnology, Instituto Superior Técnico, Lisbon, Portugal.

出版信息

Biophys J. 2011 Oct 5;101(7):1632-41. doi: 10.1016/j.bpj.2011.08.022.

Abstract

To comprehend the molecular processes that lead to the Fas death receptor clustering in lipid rafts, a 21-mer peptide corresponding to its single transmembrane domain (TMD) was reconstituted into mammalian raft model membranes composed of an unsaturated glycerophospholipid, sphingomyelin, and cholesterol. The peptide membrane lateral organization and dynamics, and its influence on membrane properties, were studied by steady-state and time-resolved fluorescence techniques and by attenuated total reflection Fourier transformed infrared spectroscopy. Our results show that Fas TMD is preferentially localized in liquid-disordered membrane regions and undergoes a strong reorganization as the membrane composition is changed toward the liquid-ordered phase. This results from the strong hydrophobic mismatch between the length of the peptide hydrophobic stretch and the hydrophobic thickness of liquid-ordered membranes. The stability of nonclustered Fas TMD in liquid-disordered domains suggests that its sequence may have a protective function against nonligand-induced Fas clustering in lipid rafts. It has been reported that ceramide induces Fas oligomerization in lipid rafts. Here, it is shown that neither Fas TMD membrane organization nor its conformation is affected by ceramide. These results are discussed within the framework of Fas membrane signaling events.

摘要

为了理解 Fas 死亡受体在脂筏中聚集的分子过程,将对应其单一跨膜结构域(TMD)的 21 个氨基酸肽重新构建到由不饱和甘油磷脂、鞘磷脂和胆固醇组成的哺乳动物脂筏模型膜中。通过稳态和时间分辨荧光技术以及衰减全反射傅里叶变换红外光谱研究了肽的膜侧向组织和动力学及其对膜性质的影响。我们的结果表明,Fas TMD 优先定位于无序的液态膜区域,并随着膜组成向有序相转变而发生强烈的重组。这是由于肽疏水延伸的长度与有序液态膜的疏水厚度之间存在很强的疏水失配。非聚集 Fas TMD 在无序液态区的稳定性表明,其序列可能对配体非诱导的 Fas 在脂筏中的聚集具有保护作用。已经报道神经酰胺在脂筏中诱导 Fas 寡聚化。在这里,研究表明神经酰胺既不影响 Fas TMD 的膜组织,也不影响其构象。这些结果在 Fas 膜信号事件的框架内进行了讨论。

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