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体细胞 MAP3K3 突变定义了脑静脉畸形的一个亚类。

Somatic MAP3K3 mutation defines a subclass of cerebral cavernous malformation.

机构信息

Department of Neurosurgery, Beijing Tiantan Hospital, Capital Medical University, Beijing 100050, China; China National Clinical Research Center for Neurological Diseases, Beijing 100050, China.

Department of Chemical and Biological Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR, China.

出版信息

Am J Hum Genet. 2021 May 6;108(5):942-950. doi: 10.1016/j.ajhg.2021.04.005. Epub 2021 Apr 22.

Abstract

Cerebral cavernous malformations (CCMs) are vascular disorders that affect up to 0.5% of the total population. About 20% of CCMs are inherited because of familial mutations in CCM genes, including CCM1/KRIT1, CCM2/MGC4607, and CCM3/PDCD10, whereas the etiology of a majority of simplex CCM-affected individuals remains unclear. Here, we report somatic mutations of MAP3K3, PIK3CA, MAP2K7, and CCM genes in CCM lesions. In particular, somatic hotspot mutations of PIK3CA are found in 11 of 38 individuals with CCMs, and a MAP3K3 somatic mutation (c.1323C>G [p.Ile441Met]) is detected in 37.0% (34 of 92) of the simplex CCM-affected individuals. Strikingly, the MAP3K3 c.1323C>G mutation presents in 95.7% (22 of 23) of the popcorn-like lesions but only 2.5% (1 of 40) of the subacute-bleeding or multifocal lesions that are predominantly attributed to mutations in the CCM1/2/3 signaling complex. Leveraging mini-bulk sequencing, we demonstrate the enrichment of MAP3K3 c.1323C>G mutation in CCM endothelium. Mechanistically, beyond the activation of CCM1/2/3-inhibited ERK5 signaling, MEKK3 p.Ile441Met (MAP3K3 encodes MEKK3) also activates ERK1/2, JNK, and p38 pathways because of mutation-induced MEKK3 kinase activity enhancement. Collectively, we identified several somatic activating mutations in CCM endothelium, and the MAP3K3 c.1323C>G mutation defines a primary CCM subtype with distinct characteristics in signaling activation and magnetic resonance imaging appearance.

摘要

脑内海绵状血管畸形(CCMs)是一种影响高达 0.5%总人口的血管疾病。约 20%的 CCM 是由于 CCM 基因的家族突变引起的,包括 CCM1/KRIT1、CCM2/MGC4607 和 CCM3/PDCD10,而大多数单纯性 CCM 受影响个体的病因仍然不清楚。在这里,我们报告了 CCM 病变中 MAP3K3、PIK3CA、MAP2K7 和 CCM 基因的体细胞突变。特别是,PIK3CA 的体细胞热点突变在 38 名 CCM 患者中有 11 例发现,而 MAP3K3 体细胞突变(c.1323C>G [p.Ile441Met])在 92 名单纯性 CCM 受影响个体中有 37.0%(34 例)检测到。引人注目的是,MAP3K3 c.1323C>G 突变存在于 95.7%(22 例)的爆米花状病变中,但仅存在于 2.5%(40 例)的亚急性出血或多灶性病变中,这些病变主要归因于 CCM1/2/3 信号复合物的突变。利用微型批量测序,我们证明了 MAP3K3 c.1323C>G 突变在 CCM 内皮细胞中的富集。从机制上讲,除了激活 CCM1/2/3 抑制的 ERK5 信号外,MEKK3 p.Ile441Met(MAP3K3 编码 MEKK3)也通过突变诱导的 MEKK3 激酶活性增强激活 ERK1/2、JNK 和 p38 途径。总的来说,我们在 CCM 内皮细胞中鉴定了几种体细胞激活突变,并且 MAP3K3 c.1323C>G 突变定义了一个具有独特信号激活和磁共振成像表现的主要 CCM 亚型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7d1/8206158/fb8cb2a75969/gr1.jpg

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