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GPI-1046 protects dorsal root ganglia from gp120-induced axonal injury by modulating store-operated calcium entry

机译:GPI-1046通过调节储库操纵的钙离子进入来保护gp120引起的轴突损伤以保护背根神经节

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摘要

Human immunodeficiency virus (HIV)–associated sensory neuropathy (HIV-SN) occurs in a large fraction of patients infected with HIV. Viral components, including the coat protein gp120, are thought to exert toxic actions on dorsal root ganglia (DRG) sensory neurons that can be further exacerbated by treatment of HIV infection with some antiretroviral agents. In a tissue culture model of HIV-SN, we found that gp120-induced axonal degeneration in DRG sensory neurons was prevented by treatment with the immunophilin ligand GPI-1046. Gp120 induced a rapid and large release of endoplasmic reticulum (ER) calcium in DRG neurons that was attenuated by treatment with GPI-1046. Further experiments suggested that GPI-1046 reduced the total ER calcium load by attenuating store-operated calcium (SOC) entry. Together, these results suggest that GPI-1046 protects DRG from gp120-induced axonal damage by decreasing the entry of calcium through SOC, thus reducing the total volume of ER calcium that is available to be released by gp120.
机译:人类免疫缺陷病毒(HIV)相关的感觉神经病(HIV-SN)大部分感染了HIV。包括外壳蛋白gp120在内的病毒成分被认为会对背根神经节(DRG)感觉神经元产生毒性作用,通过使用某些抗逆转录病毒药物治疗HIV感染会进一步加剧这种毒性作用。在HIV-SN的组织培养模型中,我们发现免疫亲和素配体GPI-1046可以预防gp120诱导的DRG感觉神经元轴突变性。 Gp120诱导DRG神经元中内质网(ER)钙快速大量释放,而GPI-1046处理可减弱该释放。进一步的实验表明,GPI-1046通过减弱贮藏操作性钙(SOC)的进入降低了总ER钙负荷。总之,这些结果表明,GPI-1046通过减少钙通过SOC的进入,从而保护了DRG不受gp120诱导的轴突损伤,从而减少了可被gp120释放的ER钙的总量。

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