脑脊液
蛋白质基因组学
指纹(计算)
病理
疾病
医学
生物
人工智能
计算机科学
生物化学
基因
基因组
基因组学
作者
Stéphanie Debette,Ilana Caro,Daniel Western,Shinichi Namba,Na Sun,Shuji Kawaguchi,Yunye He,Masashi Fujita,Gennady V. Roshchupkin,Tim D'Aoust,Marie‐Gabrielle Duperron,Muralidharan Sargurupremraj,Ami Tsuchida,Masaru Koido,Marziehsadat Ahmadi,Chengran Yang,Jigyasha Timsina,Laura Ibáñez,Koichi Matsuda,Yutaka Suzuki
标识
DOI:10.21203/rs.3.rs-4535534/v1
摘要
Abstract Cerebral small vessel disease (cSVD) is a leading cause of stroke and dementia with no specific mechanism-based treatment. We used Mendelian randomization to combine a unique cerebrospinal fluid (CSF) and plasma pQTL resource with the latest European-ancestry GWAS of MRI-markers of cSVD (white matter hyperintensities, perivascular spaces). We describe a new biological fingerprint of 49 protein-cSVD associations, predominantly in the CSF. We implemented a multipronged follow-up, across fluids, platforms, and ancestries (Europeans and East-Asian), including testing associations of direct plasma protein measurements with MRI-cSVD. We highlight 16 proteins robustly associated in both CSF and plasma, with 24/4 proteins identified in CSF/plasma only. cSVD-proteins were enriched in extracellular matrix and immune response pathways, and in genes enriched in microglia and specific microglial states (integration with single-nucleus RNA sequencing). Immune-related proteins were associated with MRI-cSVD already at age twenty. Half of cSVD-proteins were associated with stroke, dementia, or both, and seven cSVD-proteins are targets for known drugs (used for other indications in directions compatible with beneficial therapeutic effects. This first cSVD proteogenomic signature opens new avenues for biomarker and therapeutic developments.
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