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方向性偏差是小鼠模型中阿尔茨海默病相关tau蛋白病不同时空进展的基础。

Directionality bias underpins divergent spatiotemporal progression of Alzheimer-related tauopathy in mouse models.

作者信息

Torok Justin, Mezias Christopher, Raj Ashish

机构信息

University of California at San Francisco, Department of Radiology.

Cold Spring Harbor Laboratory, Department of Neuroscience.

出版信息

bioRxiv. 2024 Jul 23:2024.06.04.597478. doi: 10.1101/2024.06.04.597478.

DOI:10.1101/2024.06.04.597478
PMID:38895243
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11185722/
Abstract

Mounting evidence implicates trans-synaptic connectome-based spread as a shared mechanism behind different tauopathic conditions, yet also suggests there is divergent spatiotemporal progression between them. A potential parsimonious explanation for this apparent contradiction could be that different conditions incur differential rates and directional biases in tau transmission along fiber tracts. In this meta-analysis we closely examined this hypothesis and quantitatively tested it using spatiotemporal tau pathology patterns from 11 distinct models across 4 experimental studies. For this purpose, we extended a network-based spread model by incorporating net directionality along the connectome. Our data unambiguously supports the directional transmission hypothesis. First, retrograde bias is an unambiguously better predictor of tau progression than anterograde bias. Second, while spread exhibits retrograde character, our best-fitting biophysical models incorporate the mixed effects of both retrograde- and anterograde-directed spread, with notable tau-strain-specific differences. We also found a nontrivial association between directionality bias and tau strain aggressiveness, with more virulent strains exhibiting less retrograde character. Taken together, our study implicates directional transmission bias in tau transmission along fiber tracts as a general feature of tauopathy spread and a strong candidate explanation for the diversity of spatiotemporal tau progression between conditions. This simple and parsimonious mechanism may potentially fill a critical gap in our knowledge of the spatiotemporal ramification of divergent tauopathies.

摘要

越来越多的证据表明,基于跨突触连接组的传播是不同tau蛋白病状况背后的共同机制,但也表明它们之间存在不同的时空进展。对于这一明显矛盾的一个可能的简洁解释可能是,不同的状况在tau蛋白沿纤维束的传播中产生不同的速率和方向偏差。在这项荟萃分析中,我们仔细研究了这一假设,并使用来自4项实验研究中11个不同模型的时空tau蛋白病理模式对其进行了定量测试。为此,我们通过纳入沿连接组的净方向性扩展了基于网络的传播模型。我们的数据明确支持方向性传播假设。首先,逆行偏差比顺行偏差更能明确地预测tau蛋白的进展。其次,虽然传播表现出逆行特征,但我们最拟合的生物物理模型纳入了逆行和顺行传播的混合效应,且具有明显的tau蛋白菌株特异性差异。我们还发现方向性偏差与tau蛋白菌株的侵袭性之间存在重要关联,毒性更强的菌株表现出较少的逆行特征。综上所述,我们的研究表明,tau蛋白沿纤维束传播中的方向性传播偏差是tau蛋白病传播的一个普遍特征,也是不同状况之间时空tau蛋白进展多样性的一个有力候选解释。这一简单而简洁的机制可能潜在地填补我们在不同tau蛋白病时空分支知识方面的关键空白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdc/11284512/ba52d87ec9f0/nihpp-2024.06.04.597478v2-f0004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdc/11284512/4e028c85469f/nihpp-2024.06.04.597478v2-f0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdc/11284512/716698f535e2/nihpp-2024.06.04.597478v2-f0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdc/11284512/13bc00863f8f/nihpp-2024.06.04.597478v2-f0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdc/11284512/ba52d87ec9f0/nihpp-2024.06.04.597478v2-f0004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdc/11284512/4e028c85469f/nihpp-2024.06.04.597478v2-f0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdc/11284512/716698f535e2/nihpp-2024.06.04.597478v2-f0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdc/11284512/13bc00863f8f/nihpp-2024.06.04.597478v2-f0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdc/11284512/ba52d87ec9f0/nihpp-2024.06.04.597478v2-f0004.jpg

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本文引用的文献

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The role of A[Formula: see text] and Tau proteins in Alzheimer's disease: a mathematical model on graphs.A[公式:见正文]和 Tau 蛋白在阿尔茨海默病中的作用:基于图的数学模型。
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Anterograde and Retrograde Propagation of Inoculated Human Tau Fibrils and Tau Oligomers in a Non-Transgenic Rat Tauopathy Model.接种的人tau蛋白原纤维和tau蛋白寡聚体在非转基因大鼠tau蛋白病模型中的顺行和逆行传播
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The effects of microglia on tauopathy progression can be quantified using Nexopathy in silico (Nexis) models.
小胶质细胞对 tau 病进展的影响可以使用 Nexopathy 计算机模型(Nexis)进行定量评估。
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Emergence of directional bias in tau deposition from axonal transport dynamics.轴突运输动力学导致tau蛋白沉积出现方向性偏差。
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