Schizophrenia Plasma Autoantibodies Promote 'Biased Agonism' at the 5-Hydroxytryptamine 2A Receptor: Neurotoxicity is Positively Modulated by Metabotropic Glutamate 2/3 Receptor Agonism.

Endocrinology, diabetes and metabolism journal Pub Date : 2019-01-01 Epub Date: 2019-08-14
Mark B Zimering, Shree G Nadkarni
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Abstract

Aims: To test whether neurite-inhibitory plasma autoantibodies in chronic schizophrenia activate Gq/11- and Gi- coupled signaling pathways downstream of 5-hydroxytryptamine 2A receptor activation; and for modulation of serotonergic signaling by the metabotropic 2/3 receptor agonist LY379268.

Methods: Plasma from five older adults with chronic schizophrenia and eight age-matched patients having another neuropsychiatric, immune or metabolic disorder was subjected to Protein-A affinity chromatography to obtain IgG autoantibodies. Mean neurite retraction (5 minutes) or cell survival (24 hours) was determined in mouse N2A neuroblastoma cells incubated with autoantibodies in the presence or absence of specific antagonists of the Gq/11/PLC/IP3R signaling pathway, Gi-coupled, beta-arrestin2-directed pathways, or LY379268.

Results: Chronic schizophrenia plasma autoantibodies- mediated dose- and time-dependent acute N2A neurite retraction was completely prevented by M100907, a selective 5-hydroxytryptamine 2A receptor antagonist. LY379268 promoted autoantibody-induced neurite retraction causing a shift-to-the-left in the dose-response curve. Antagonists of the RhoA/Rho kinase and Gq/11/PLC/IP3R signaling pathways blocked autoantibody-mediated neurite retraction. Chronic schizophrenia plasma autoantibodies mediated increased N2A cell survival which was blocked by LY379268, pertussis toxin, and antagonists of PI3-kinase- mediated survival signaling.

Conclusion: Schizophrenia plasma autoantibodies activate the 5-hydroxytryptamine 2A receptor positively coupled to Gq/11/PLC/IP3R pathway and RhoA/Rho kinase signaling activation in promoting acute N2A cell neurite retraction. Autoantibodies in a subset of patients experiencing hallucinations promoted increased N2A cell survival mediated (in part) via a pertussis-toxin sensitive, Gi-coupled, PI3-kinase-dependent mechanism. Positive modulation of 5-HT2AR-mediated neurite retraction by LY379268 suggests the autoantibodies may target (in part) the 5-HT2AR/mGlu2R heteromer.

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精神分裂症血浆自身抗体促进5-羟色胺2A受体的“偏倚激动作用”:代谢性谷氨酸2/3受体激动作用正调节神经毒性
目的:检测慢性精神分裂症患者的神经突抑制性血浆自身抗体是否激活5-羟色胺2A受体激活下游的Gq/11-和Gi-偶联信号通路;以及通过代谢2/3受体激动剂LY379268调节血清素能信号。方法:对5例老年慢性精神分裂症患者和8例年龄匹配的其他神经精神、免疫或代谢疾病患者的血浆进行蛋白- a亲和层析,获得IgG自身抗体。在Gq/11/PLC/IP3R信号通路、gi偶联、β -arrestin2导向通路或LY379268的特异性拮抗剂存在或不存在的情况下,用自身抗体孵育小鼠N2A神经母细胞瘤细胞,测定平均神经突缩回(5分钟)或细胞存活(24小时)。结果:选择性5-羟色胺2A受体拮抗剂M100907可完全预防慢性精神分裂症血浆自身抗体介导的剂量和时间依赖性急性N2A神经突退缩。LY379268促进自身抗体诱导的神经突收缩,导致剂量-反应曲线向左偏移。RhoA/Rho激酶和Gq/11/PLC/IP3R信号通路的拮抗剂可阻断自身抗体介导的神经突收缩。慢性精神分裂症血浆自身抗体介导的N2A细胞存活增加被LY379268、百日咳毒素和pi3激酶介导的存活信号拮抗剂阻断。结论:精神分裂症血浆自身抗体激活Gq/11/PLC/IP3R通路正偶联的5-羟色胺2A受体和RhoA/Rho激酶信号激活,促进急性N2A细胞神经突缩回。在经历幻觉的患者亚群中,自身抗体通过百日咳毒素敏感、gi偶联、pi3激酶依赖的机制促进了N2A细胞存活的增加(部分)。LY379268对5-HT2AR介导的神经突收缩的正向调节表明,自身抗体可能(部分地)靶向5-HT2AR/mGlu2R异构体。
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