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特殊神经肽密集型神经元对阿尔茨海默病选择性易损性的多方面影响。

Multifaceted impact of specialized neuropeptide-intensive neurons on the selective vulnerability in Alzheimer's disease.

作者信息

Li Manci, Flack Nichole, Larsen Peter A

机构信息

Department of Veterinary and Biomedical Sciences, University of Minnesota, St. Paul, MN 55108.

Minnesota Center for Prion Research and Outreach, College of Veterinary Medicine, University of Minnesota, St. Paul MN 55108.

出版信息

bioRxiv. 2024 Apr 22:2023.11.13.566905. doi: 10.1101/2023.11.13.566905.

Abstract

INTRODUCTION

Widespread disruption of neuropeptide (NP) networks in Alzheimer's disease (AD) and disproportionate absence of neurons expressing igh P-roducing, coined as HNP neurons, have been reported for the entorhinal cortex (EC) of AD brains. Hypothesizing that functional features of HNP neurons are involved in the early pathogenesis of AD, we aim to understand the molecular mechanisms underlying these observations.

METHODS

Multiscale and spatiotemporal transcriptomic analysis was used to investigate AD-afflicted and healthy brains. Our focus encompassed NP expression dynamics in AD, -associated s (ADNPs) trajectories with aging, and the neuroanatomical distribution of HNP neuron.

RESULTS

Findings include that 1) HNP neurons exhibited heightened metabolic needs and an upregulation of gene expressions linked to protein misfolding; 2) dysfunctions of ADNP production occurred in aging and mild cognitive decline; 3) HNP neurons co-expressing ADNPs were preferentially distributed in brain regions susceptible to AD.

DISCUSSION

We identified potential mechanisms that contribute to the selective vulnerability of HNP neurons to AD. Our results indicate that the functions of HNP neurons predispose them to oxidative stress and protein misfolding, potentially serving as inception sites for misfolded proteins in AD.

摘要

引言

据报道,在阿尔茨海默病(AD)患者的大脑内嗅皮质(EC)中,神经肽(NP)网络广泛受到破坏,且产生igh的神经元(称为HNP神经元)大量缺失。我们假设HNP神经元的功能特征参与了AD的早期发病机制,旨在了解这些观察结果背后的分子机制。

方法

采用多尺度时空转录组分析来研究AD患者大脑和健康大脑。我们重点研究了AD中NP的表达动态、与衰老相关的AD神经肽(ADNP)轨迹以及HNP神经元的神经解剖分布。

结果

研究结果包括:1)HNP神经元表现出更高的代谢需求,且与蛋白质错误折叠相关的基因表达上调;2)ADNP产生功能障碍出现在衰老和轻度认知衰退阶段;3)共表达ADNP的HNP神经元优先分布于易患AD的脑区。

讨论

我们确定了导致HNP神经元对AD具有选择性易感性的潜在机制。我们的结果表明,HNP神经元的功能使其易受氧化应激和蛋白质错误折叠的影响,可能成为AD中错误折叠蛋白的起始位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2617/11042616/09b1ff092052/nihpp-2023.11.13.566905v2-f0001.jpg

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