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Activation of TRPML1 Clears Intraneuronal Aβ in Preclinical Models of HIV Infection

机译:TRPML1的激活清除了HIV感染的临床前模型中的神经内神经Aβ。

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摘要

Antiretroviral therapy extends the lifespan of human immunodeficiency virus (HIV)-infected patients, but many survivors develop premature impairments in cognition. These residual cognitive impairments may involve aberrant deposition of amyloid β-peptides (Aβ). By unknown mechanisms, Aβ accumulates in the lysosomal and autophagic compartments of neurons in the HIV-infected brain. Here we identify the molecular events evoked by the HIV coat protein gp120 that facilitate the intraneuronal accumulation of Aβ. We created a triple transgenic gp120/APP/PS1 mouse that recapitulates intraneuronal deposition of Aβ in a manner reminiscent of the HIV-infected brain. In cultured neurons, we found that the HIV coat protein gp120 increased the transcriptional expression of BACE1 through repression of PPARγ, and increased APP expression by promoting interaction of the translation-activating RBP heterogeneous nuclear ribonucleoprotein C with APP mRNA. APP and BACE1 were colocalized into stabilized membrane microdomains, where the β-cleavage of APP and Aβ formation were enhanced. Aβ-peptides became localized to lysosomes that were engorged with sphingomyelin and calcium. Stimulating calcium efflux from lysosomes with a TRPM1 agonist promoted calcium efflux, luminal acidification, and cleared both sphingomyelin and Aβ from lysosomes. These findings suggest that therapeutics targeted to reduce lysosomal pH in neurodegenerative conditions may protect neurons by facilitating the clearance of accumulated sphingolipids and Aβ-peptides.
机译:抗逆转录病毒疗法延长了感染人类免疫缺陷病毒(HIV)的患者的寿命,但是许多幸存者在认知方面过早地受损。这些残留的认知障碍可能涉及淀粉样β肽(Aβ)的异常沉积。通过未知的机制,Aβ会在感染了HIV的大脑中的神经元的溶酶体和自噬区室中积聚。在这里,我们确定了由HIV外壳蛋白gp120引起的分子事件,该分子事件促进了Aβ在神经内的积累。我们创建了一个三重转基因gp120 / APP / PS1小鼠,以一种让人联想到被HIV感染的大脑的方式概括了Aβ在神经内的沉积。在培养的神经元中,我们发现HIV外壳蛋白gp120通过抑制PPARγ来增加BACE1的转录表达,并通过促进翻译激活的RBP异质核糖核蛋白C与APP mRNA的相互作用来增加APP表达。 APP和BACE1共定位到稳定的膜微区,其中APP的β裂解和Aβ形成得到增强。 Aβ肽定位于被鞘磷脂和钙充盈的溶酶体。用TRPM1激动剂刺激溶酶体的钙外流促进钙流出,管腔酸化,并从溶酶体中清除鞘磷脂和Aβ。这些发现表明,旨在降低神经退行性疾病中溶酶体pH值的治疗药物可通过促进清除积累的鞘脂和Aβ肽来保护神经元。

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