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HIV-1 衣壳蛋白与脂膜相互作用的机制研究。

Mechanistic Investigation of HIV-1 Gag Association with Lipid Membranes.

机构信息

Department of Chemistry , University of Utah , 315 South 1400 East, Room 2020 , Salt Lake City , Utah 84112 , United States.

Department of Biochemistry , University of Utah , 15 North Medical Drive East, Room 4100 , Salt Lake City , Utah 84112 , United States.

出版信息

J Phys Chem B. 2019 Jun 6;123(22):4673-4687. doi: 10.1021/acs.jpcb.9b02655. Epub 2019 May 28.

Abstract

An extensive investigation into the initial association of HIV-1 Gag with lipid membranes was conducted with second harmonic generation. The roles of the lipid phase, phospholipid 1,2-dioleoyl- sn-glycero-3-phospho-(1-myo-inositol-4,5-bisphosphate) [PI(4,5)P], the presence of the myristoyl group on Gag, the C-terminus of Gag, and the presence of transfer ribonucleic acid (tRNA) in Gag-membrane association were examined using the physiologically most relevant full-length Gag protein studied thus far. The tighter packing of a bilayer composed of gel-phase lipids was found to have a lower relative amount of membrane-bound Gag in comparison to its fluid-phase counterpart. Rather than driving membrane association of Gag, the presence of PI(4,5)P and the myristoyl group were found to anchor Gag at the membrane by decreasing the rate of desorption. Specifically, the interaction with PI(4,5)P allows Gag to overcome electrostatic repulsion with negatively charged lipids at the membrane surface. This behavior was verified by measuring the binding properties of Gag mutants in the matrix domain of Gag, which prevented anchoring to the membrane either by blocking interaction with PI(4,5)P or by preventing exposure of the myristoyl group. The presence of tRNA was found to inhibit Gag association with the membrane by specifically blocking the PI(4,5)P binding region, thereby preventing exposure of the myristoyl group and precluding subsequent anchoring of Gag to the membrane. While Gag likely samples all membranes, only the anchoring provided by the myristoyl group and PI(4,5)P allows Gag to accumulate at the membrane. These quantitative results on the kinetics and thermodynamics of Gag association with lipid membranes provide important new information about the mechanism of Gag-membrane association.

摘要

用二次谐波产生法对 HIV-1 Gag 与脂膜的初始关联进行了广泛的研究。用生理上最相关的全长 Gag 蛋白研究了脂相、磷脂 1,2-二油酰基-sn-甘油-3-磷酸-(1-肌醇-4,5-二磷酸)[PI(4,5)P]、Gag 上的豆蔻酰基团、Gag 的 C 末端以及 Gag 中的转移核糖核酸(tRNA)在 Gag-膜结合中的作用。结果发现,凝胶相脂质组成的双层的紧密堆积使结合在膜上的 Gag 的相对量低于其流体相的对应物。PI(4,5)P 和豆蔻酰基团的存在不是驱动 Gag 与膜结合,而是通过降低解吸速率将 Gag 锚定在膜上。具体而言,与 PI(4,5)P 的相互作用使 Gag 能够克服膜表面带负电荷的脂质的静电排斥。通过测量 Gag 基质域中 Gag 突变体的结合特性验证了这种行为,这些突变体通过阻止与 PI(4,5)P 的相互作用或阻止豆蔻酰基团的暴露,阻止了 Gag 与膜的锚定。发现 tRNA 的存在通过特异性阻断 PI(4,5)P 结合区域来抑制 Gag 与膜的结合,从而阻止豆蔻酰基团的暴露并排除 Gag 随后与膜的锚定。虽然 Gag 可能会采样所有的膜,但只有豆蔻酰基团和 PI(4,5)P 的锚定才能使 Gag 聚集在膜上。这些关于 Gag 与脂膜结合的动力学和热力学的定量结果提供了关于 Gag-膜结合机制的重要新信息。

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