An endothelial specific mouse model for the capillary malformation mutation Gnaq p.R183Q.

IF 9.2 1区 医学 Q1 PERIPHERAL VASCULAR DISEASE
Patrick Smits, Leanna Marrs, Yu Sheng Cheng, Michal Ad, Sana Nasim, David Zurakowski, Joyce Bischoff, Arin K Greene
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引用次数: 0

Abstract

Capillary malformation (CM) is a congenital, non-hereditary lesion composed of enlarged and tortuous blood vessels. CM is associated with a somatic p.R183Q activating mutation in the Guanine nucleotide-binding protein G(q) subunit alpha (GNAQ) gene in endothelial cells (EC). Cutaneous CMs are present in 1/300 infants and in 55-70% of CM cases soft tissue overgrowth is observed. Pharmacotherapy for CM does not exist. Here we report a conditional mouse model allowing the simultaneous tissue specific expression of GNAQ p.R183Q and Green Fluorescent Protein (GFP) from the Rosa26 (R26) locus (R26GT - Gnaq-GFP). We show that expression of GNAQ p.R183Q in ECs results in vascular malformations with features similar to human CM lesions. GNAQ p.R183Q expression during embryonic development (Tg-Cadherin5Cre (Tg-Cdh5Cre)) resulted in a severe vascular phenotype, lethal by embryonic (E) 16.5. Sporadic induction of mutant GNAQ expression in ECs at postnatal (P) day 1 (Tg-Cdh5CreER) led to tortuous and enlarged blood vessels, most noticeable in the intestines. GNAQ p.R183Q/GFP expressing ECs co-localized with lesions and displayed increased proliferation. Mutant ECs had abnormal mural cell coverage and abnormal pericellular extracellular matrix deposition, which was confirmed in human CM samples. Similar to human CM they displayed strong expression of the tip cell marker Endothelial cell-specific molecule 1 (ESM1) and increased Angiopoietin 2 (ANGPT2) expression. In conclusion, GNAQ p.R183Q expression in mouse ECs causes vascular malformations supporting the mutation's causality for CM. The lesions recapitulate multiple features of human CM, making the mouse model suitable for the preclinical testing of future CM pharmacotherapy.

毛细血管畸形突变Gnaq p.R183Q的内皮特异性小鼠模型。
毛细血管畸形(CM)是一种先天性的非遗传性病变,由血管扩张和弯曲组成。CM与内皮细胞(EC)中鸟嘌呤核苷酸结合蛋白G(q)亚单位α (GNAQ)基因的体细胞p.R183Q激活突变有关。1/300的婴儿中存在皮肤CM, 55-70%的CM病例中观察到软组织过度生长。CM的药物治疗不存在。在这里,我们报道了一个条件小鼠模型,允许同时组织特异性表达GNAQ p.R183Q和来自Rosa26 (R26)位点的绿色荧光蛋白(GFP) (R26GT - GNAQ -GFP)。我们发现,在ECs中表达GNAQ p.R183Q会导致血管畸形,其特征与人类CM病变相似。GNAQ p.R183Q在胚胎发育期间的表达(Tg-Cadherin5Cre (Tg-Cdh5Cre))导致严重的血管表型,胚胎致死(E) 16.5。出生后(P)第1天,在ECs中散发性诱导突变GNAQ表达(Tg-Cdh5CreER)导致血管扭曲和扩张,最明显的是在肠道中。表达GNAQ p.R183Q/GFP的ECs与病变共定位,并显示增殖增加。突变的ECs具有异常的壁细胞覆盖和异常的细胞外基质沉积,这在人类CM样本中得到证实。与人类CM相似,它们显示出尖端细胞标记内皮细胞特异性分子1 (ESM1)的强烈表达和血管生成素2 (ANGPT2)的表达增加。总之,小鼠内皮细胞中GNAQ p.R183Q的表达导致血管畸形,支持该突变与CM的因果关系。这些病变反映了人类CM的多种特征,使该小鼠模型适合于未来CM药物治疗的临床前试验。
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来源期刊
Angiogenesis
Angiogenesis PERIPHERAL VASCULAR DISEASE-
CiteScore
21.90
自引率
8.20%
发文量
37
审稿时长
6-12 weeks
期刊介绍: Angiogenesis, a renowned international journal, seeks to publish high-quality original articles and reviews on the cellular and molecular mechanisms governing angiogenesis in both normal and pathological conditions. By serving as a primary platform for swift communication within the field of angiogenesis research, this multidisciplinary journal showcases pioneering experimental studies utilizing molecular techniques, in vitro methods, animal models, and clinical investigations into angiogenic diseases. Furthermore, Angiogenesis sheds light on cutting-edge therapeutic strategies for promoting or inhibiting angiogenesis, while also highlighting fresh markers and techniques for disease diagnosis and prognosis.
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