Large-scale proteome and metabolome analysis of CSF implicates altered glucose and carbon metabolism and succinylcarnitine in Alzheimer's disease

脑脊液的大规模蛋白质组和代谢组分析表明,阿尔茨海默病中葡萄糖和碳代谢以及琥珀酰肉碱的改变与此有关

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作者:Daniel J Panyard, Justin McKetney, Yuetiva K Deming, Autumn R Morrow, Gilda E Ennis, Erin M Jonaitis, Carol A Van Hulle, Chengran Yang, Yun Ju Sung, Muhammad Ali, Gwendlyn Kollmorgen, Ivonne Suridjan, Anna Bayfield, Barbara B Bendlin, Henrik Zetterberg, Kaj Blennow, Carlos Cruchaga, Cynthia M Carlss

Discussion

These results implicate glucose and carbon metabolic dysregulation and increased CSF succinylcarnitine levels with amyloid and tau pathology in AD. Highlights: Cerebrospinal fluid (CSF) proteome enriched for extracellular, neuronal, immune, and protein processing. Glucose/carbon metabolic pathways enriched among amyloid/tau-associated proteins. Key glucose/carbon metabolism protein associations independently replicated. CSF proteome outperformed other omics data in predicting amyloid/tau positivity. CSF metabolomics identified and replicated a succinylcarnitine-phosphorylated tau association.

Methods

We conducted a CSF proteome-wide analysis among participants of varying AT pathology (n = 137 participants; 915 proteins) with nine CSF biomarkers of neurodegeneration and neuroinflammation.

Results

We identified 61 proteins significantly associated with the AT category (P < 5.46 × 10-5 ) and 636 significant protein-biomarker associations (P < 6.07 × 10-6 ). Proteins from glucose and carbon metabolism pathways were enriched among amyloid- and tau-associated proteins, including malate dehydrogenase and aldolase A, whose associations with tau were replicated in an independent cohort (n = 717). CSF metabolomics identified and replicated an association of succinylcarnitine with phosphorylated tau and other biomarkers.

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