Hirai Mitushiro, Kimura Ryota, Takeuchi Kazuki, Sugiyama Masaaki, Kasahara Kouji, Ohta Noboru, Farago Bela, Stadler Andreas, Zaccai Giuseppe
Gunma University, Maebashi, Gunma 371-8510, Japan.
Eur Phys J E Soft Matter. 2013 Jul;36(7):74. doi: 10.1140/epje/i2013-13074-3. Epub 2013 Jul 16.
While the steady-state existence in the size and shape of liquid-ordered microdomains in cell membranes, the so-called "lipid rafts", still remain the subject of debate, glycosphingolipid-cholesterol rich regions in plasma membranes have been considered to have a function as platforms for signaling and sorting. In addition, recent spectroscopic studies show that the interaction between monosialoganglioside and amyloid beta (Aβ protein promotes the transition of Aβ from the native structure to the cross-beta fold in amyloid aggregates. However, there is few evidence on the dynamics of "lipid rafts" membranes. As the neutron spin-echo (NSE) technique is well known to detect directly slow dynamics of membrane systems in situ, by the combination of NSE and small-angle X-ray scattering we have studied the effect of the interaction between raft-model membrane and amyloid Aβ proteins on the structure and dynamics of a large uni-lamellar vesicle (LUV) consisting of monosialoganglioside-cholesterol-phospholipid ternary mixtures as a model of lipid-raft membrane. We have found that the interaction between the Aβ proteins and the model membrane at the liquid crystal phase significantly suppresses a bending-diffusion motion with a minor effect on the LUV structure. The present results would suggest a possibility of non-receptor-mediated disorder in signaling through a modulation of a membrane dynamics induced by the association of amyloidogenic peptides on a plasma membrane.
虽然细胞膜中所谓的“脂筏”,即液态有序微区的大小和形状的稳态存在仍存在争议,但质膜中富含糖鞘脂-胆固醇的区域被认为具有信号传导和分选平台的功能。此外,最近的光谱研究表明,单唾液酸神经节苷脂与淀粉样β(Aβ蛋白)之间的相互作用促进了Aβ在淀粉样聚集体中从天然结构向交叉β折叠的转变。然而,关于“脂筏”膜动力学的证据很少。由于中子自旋回波(NSE)技术众所周知可直接原位检测膜系统的慢动力学,通过将NSE与小角X射线散射相结合,我们研究了筏模型膜与淀粉样Aβ蛋白之间的相互作用对由单唾液酸神经节苷脂-胆固醇-磷脂三元混合物组成的大单层囊泡(LUV)的结构和动力学的影响,该LUV作为脂筏膜的模型。我们发现,在液晶相时Aβ蛋白与模型膜之间的相互作用显著抑制了弯曲扩散运动,对LUV结构的影响较小。目前的结果表明,通过调节质膜上淀粉样肽缔合诱导的膜动力学,可能存在非受体介导的信号传导紊乱。