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GM-3内酯模拟物与CD4和HIV-1包膜蛋白相互作用,阻碍HIV-1感染且不引起组织病理学改变。

GM-3 Lactone Mimetic Interacts with CD4 and HIV-1 Env Proteins, Hampering HIV-1 Infection without Inducing a Histopathological Alteration.

作者信息

Richichi Barbara, Pastori Claudia, Gherardi Stefano, Venuti Assunta, Cerreto Antonella, Sanvito Francesca, Toma Lucio, Lopalco Lucia, Nativi Cristina

机构信息

Department of Chemistry, University of Florence , 50019 Sesto F.no (FI), Italy.

Division of Immunology, Transplantation and Infectious Diseases, San Raffaele Scientific Institute , 20127 Milan, Italy.

出版信息

ACS Infect Dis. 2016 Aug 12;2(8):564-71. doi: 10.1021/acsinfecdis.6b00056. Epub 2016 Jun 24.

Abstract

Glycosphingolipids (GSLs) are involved in HIV-1 entry. GM-3 ganglioside, a widespread GSL, affects HIV entry and infection in different ways, depending on the concentration, through its anchoring activity in lipid rafts. This explains why the induction of an altered GSLs metabolism was a tempting approach to reducing HIV-1 cell infection. This study assayed the biological properties of a synthetic GM-3 lactone mimetic, 1, aimed at blocking HIV-1 infection without inducing the adverse events expected by an altered metabolism of GLSs in vivo. The mimetic, conjugated to immunogenic protein ovalbumin and multivalently presented, was able to bind the CD4 molecule with high affinity and block its engagement with gp120, thus inhibiting virus entry. Elicited antimimetic antibodies were also able to block HIV-1 infection in vitro, with activity complementary to that observed for 1. These preliminary results show that the use of GSLs mimetics can be a novel promising mode to block HIV-1 infection and that 1 and other GSL mimetics deserve further attention.

摘要

糖鞘脂(GSLs)参与HIV-1的进入过程。GM-3神经节苷脂是一种广泛存在的GSL,它通过其在脂筏中的锚定活性,以不同方式影响HIV的进入和感染,具体取决于浓度。这就解释了为什么诱导GSLs代谢改变是一种有吸引力的减少HIV-1细胞感染的方法。本研究检测了一种合成GM-3内酯模拟物1的生物学特性,旨在阻断HIV-1感染,而不诱导体内GLSs代谢改变所预期的不良事件。该模拟物与免疫原性蛋白卵清蛋白偶联并多价呈现,能够以高亲和力结合CD4分子并阻断其与gp120的结合,从而抑制病毒进入。诱导产生的抗模拟物抗体在体外也能够阻断HIV-1感染,其活性与观察到的1的活性互补。这些初步结果表明,使用GSLs模拟物可能是一种阻断HIV-1感染的有前景的新方法,并且1和其他GSL模拟物值得进一步关注。

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