NMDA glutamate receptor antagonist MK‐801 induces proteome changes in adult human brain slices which are partially counteracted by haloperidol and clozapine

NMDA受体 氟哌啶醇 谷氨酸受体 美金刚 内大麻素系统 地唑西平 氯氮平 蛋白质组 药理学 人脑 受体 神经科学 精神分裂症(面向对象编程) 生物化学 生物 生物信息学 医学 多巴胺 精神科
作者
Valéria de Almeida,Niele Dias Mendes,Giuliana S. Zuccoli,Guilherme Reis‐de‐Oliveira,Glaucia M. Almeida,Guilherme Gozzoli Podolsky Gondim,Luciano Neder,Daniel Martins‐de‐Souza,Adriano Sebollela
出处
期刊:Journal of Neurochemistry [Wiley]
卷期号:168 (3): 238-250
标识
DOI:10.1111/jnc.16059
摘要

Deciphering the molecular pathways associated with N-methyl-D-aspartate receptor (NMDAr) hypofunction and its interaction with antipsychotics is necessary to advance our understanding of the basis of schizophrenia, as well as our capacity to treat this disease. In this regard, the development of human brain-derived models that are amenable to studying the neurobiology of schizophrenia may contribute to filling the gaps left by the widely employed animal models. Here, we assessed the proteomic changes induced by the NMDA glutamate receptor antagonist MK-801 on human brain slice cultures obtained from adult donors submitted to respective neurosurgery. Initially, we demonstrated that MK-801 diminishes NMDA glutamate receptor signaling in human brain slices in culture. Next, using mass-spectrometry-based proteomics and systems biology in silico analyses, we found that MK-801 led to alterations in proteins related to several pathways previously associated with schizophrenia pathophysiology, including ephrin, opioid, melatonin, sirtuin signaling, interleukin 8, endocannabinoid, and synaptic vesicle cycle. We also evaluated the impact of both typical and atypical antipsychotics on MK-801-induced proteome changes. Interestingly, the atypical antipsychotic clozapine showed a more significant capacity to counteract the protein alterations induced by NMDAr hypofunction than haloperidol. Finally, using our dataset, we identified potential modulators of the MK-801-induced proteome changes, which may be considered promising targets to treat NMDAr hypofunction in schizophrenia. This dataset is publicly available and may be helpful in further studies aimed at evaluating the effects of MK-801 and antipsychotics in the human brain.

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