The UFMylation pathway is impaired in Alzheimer's disease

被引:2
作者
Yan, Tingxiang [1 ]
Heckman, Michael G. [2 ]
Craver, Emily C. [2 ]
Liu, Chia-Chen [1 ]
Rawlinson, Bailey D. [1 ]
Wang, Xue [1 ]
Murray, Melissa E. [1 ,3 ]
Dickson, Dennis W. [1 ,3 ]
Ertekin-Taner, Nilufer [1 ,3 ]
Lou, Zhenkun [4 ]
Bu, Guojun [1 ,5 ]
Springer, Wolfdieter [1 ,3 ]
Fiesel, Fabienne C. [1 ,3 ]
机构
[1] Mayo Clin, Dept Neurosci, Jacksonville, FL 32224 USA
[2] Mayo Clin, Div Clin Trials & Biostat, Jacksonville, FL 32224 USA
[3] Mayo Clin, Neurosci PhD Program, Grad Sch Biomed Sci, Jacksonville, FL 32224 USA
[4] Mayo Clin, Dept Oncol, Rochester, MN 55905 USA
[5] Hong Kong Univ Sci & Technol, Div Life Sci, Hong Kong, Peoples R China
关键词
UFMylation; UFM1; UFSP2; Alzheimer's disease; Tau; Brain; DOUBLE-STRAND BREAKS; BIALLELIC VARIANTS; CRYSTAL-STRUCTURE; UFM1; STRESS; DISRUPTION; PROTEASES;
D O I
10.1186/s13024-024-00784-y
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
BackgroundAlzheimer's disease (AD) is characterized by the presence of neurofibrillary tangles made of hyperphosphorylated tau and senile plaques composed of beta-amyloid. These pathognomonic deposits have been implicated in the pathogenesis, although the molecular mechanisms and consequences remain undetermined. UFM1 is an important, but understudied ubiquitin-like protein that is covalently attached to substrates. UFMylation has recently been identified as major modifier of tau aggregation upon seeding in experimental models. However, potential alterations of the UFM1 pathway in human AD brain have not been investigated yet.MethodsHere we used frontal and temporal cortex samples from individuals with or without AD to measure the protein levels of the UFMylation pathway in human brain. We used multivariable regression analyses followed by Bonferroni correction for multiple testing to analyze associations of the UFMylation pathway with neuropathological characteristics, primary biochemical measurements of tau and additional biochemical markers from the same cases. We further studied associations of the UFMylation cascade with cellular stress pathways using Spearman correlations with bulk RNAseq expression data and functionally validated these interactions using gene-edited neurons that were generated by CRISPR-Cas9.ResultsCompared to controls, human AD brain had increased protein levels of UFM1. Our data further indicates that this increase mainly reflects conjugated UFM1 indicating hyperUFMylation in AD. UFMylation was strongly correlated with pathological tau in both AD-affected brain regions. In addition, we found that the levels of conjugated UFM1 were negatively correlated with soluble levels of the deUFMylation enzyme UFSP2. Functional analysis of UFM1 and/or UFSP2 knockout neurons revealed that the DNA damage response as well as the unfolded protein response are perturbed by changes in neuronal UFM1 signaling.ConclusionsThere are marked changes in the UFMylation pathway in human AD brain. These changes are significantly associated with pathological tau, supporting the idea that the UFMylation cascade might indeed act as a modifier of tau pathology in human brain. Our study further nominates UFSP2 as an attractive target to reduce the hyperUFMylation observed in AD brain but also underscores the critical need to identify risks and benefits of manipulating the UFMylation pathway as potential therapeutic avenue for AD.
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页数:17
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