Increased PDGFRB and NF-κB signaling caused by highly prevalent somatic mutations in intracranial aneurysms

PDGFRB公司 生物 癌症研究 NF-κB 体细胞 突变 医学 基因 信号转导 细胞生物学 遗传学
作者
Yasuyuki Shima,Shota Sasagawa,Nakao Ota,Rieko Oyama,Minoru Tanaka,Mie Kubota‐Sakashita,Hirochika Kawakami,Mika Kobayashi,Naoko Takubo,Atsuko Ozeki,Xiaoning Sun,Yeon‐Jeong Kim,Yoichiro Kamatani,Koichi Matsuda,Kazuhiro Maejima,Masashi Fujita,Kosumo Noda,Hiroyasu Kamiyama,Rokuya Tanikawa,Motoo Nagane
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:15 (700): eabq7721-eabq7721 被引量:21
标识
DOI:10.1126/scitranslmed.abq7721
摘要

Intracranial aneurysms (IAs) are a high-risk factor for life-threatening subarachnoid hemorrhage. Their etiology, however, remains mostly unknown at present. We conducted screening for sporadic somatic mutations in 65 IA tissues (54 saccular and 11 fusiform aneurysms) and paired blood samples by whole-exome and targeted deep sequencing. We identified sporadic mutations in multiple signaling genes and examined their impact on downstream signaling pathways and gene expression in vitro and an arterial dilatation model in mice in vivo. We identified 16 genes that were mutated in at least one IA case and found that these mutations were highly prevalent (92%: 60 of 65 IAs) among all IA cases examined. In particular, mutations in six genes (PDGFRB, AHNAK, OBSCN, RBM10, CACNA1E, and OR5P3), many of which are linked to NF-κB signaling, were found in both fusiform and saccular IAs at a high prevalence (43% of all IA cases examined). We found that mutant PDGFRBs constitutively activated ERK and NF-κB signaling, enhanced cell motility, and induced inflammation-related gene expression in vitro. Spatial transcriptomics also detected similar changes in vessels from patients with IA. Furthermore, virus-mediated overexpression of a mutant PDGFRB induced a fusiform-like dilatation of the basilar artery in mice, which was blocked by systemic administration of the tyrosine kinase inhibitor sunitinib. Collectively, this study reveals a high prevalence of somatic mutations in NF-κB signaling pathway-related genes in both fusiform and saccular IAs and opens a new avenue of research for developing pharmacological interventions.
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