Du Rose, Zhou Jing, Lorenzano Svetlana, Liu Wenming, Charoenvimolphan Nareerat, Qian Baogang, Xu Jun, Wang Jian, Zhang Xinmu, Wang Xin, Berndt Annerose, Devan William J, Valant Valerie J, Wang Jinyi, Furie Karen L, Rosand Jonathan, Rost Natalia, Friedlander Robert M, Paigen Beverly, Weiss Scott T
From the Department of Neurosurgery (R.D., J.Z., W.L., N.C., B.Q., J.X., J.W., X.Z., X.W.) and Channing Division of Network Medicine, Department of Medicine (R.D., S.T.W.), Brigham and Women's Hospital, Boston, MA; Department of Neurology, Massachusetts General Hospital, Boston (S.L., W.J.D., V.J.V., J.R., N.R.); Department of Neurology and Psychiatry, Sapienza University of Rome, Rome, Italy (S.L.); Department of Chemical Biology, Northwest Agriculture and Forestry University, Shaanxi, People's Republic of China (W.L., J.W.); Department of Neurosurgery, China-Japan Friendship Hospital, Beijing, People's Republic of China (J.X.); The Jackson Laboratory, Bar Harbor, ME (A.B., B.P.); Division of Pulmonary, Allergy, and Critical Care Medicine, Department of Medicine (A.B.) and Department of Neurosurgery (R.M.F.), University of Pittsburgh School of Medicine, PA; Quinnipiac University Frank H. Netter, MD School of Medicine, Hamden, CT (W.J.D.); University of Massachusetts Medical School, Worcester (V.J.V.); and Department of Neurology, Warren Alpert Medical School of Brown University, Providence, RI (K.L.F.).
Stroke. 2015 Dec;46(12):3514-22. doi: 10.1161/STROKEAHA.115.010767. Epub 2015 Nov 5.
The extent of ischemic injury in response to cerebral ischemia is known to be affected by native vasculature. However, the nonvascular and dynamic vascular responses and their genetic basis are not well understood.
We performed a genome-wide association study in 235 mice from 33 inbred strains using the middle cerebral artery occlusion model. Population structure and genetic relatedness were accounted for using the efficient mixed-model association method. Human orthologs to the genes associated with the significant and suggestive single-nucleotide polymorphisms from the mouse strain survey were examined in patients with M1 occlusions admitted with signs and symptoms of acute ischemic stroke.
We identified 4 genome-wide significant and suggestive single-nucleotide polymorphisms to be associated with infarct volume in mice (rs3694965, P=2.17×10(-7); rs31924033, P=5.61×10(-6); rs32249495, P=2.08×10(-7); and rs3677406, P=9.56×10(-6)). rs32249495, which corresponds to angiopoietin-1 (ANGPT1), was also significant in the recessive model in humans, whereas rs1944577, which corresponds to ZBTB7C, was nominally significant in both the additive and dominant genetic models in humans. ZBTB7C was shown to be upregulated in endothelial cells using both in vitro and in vivo models of ischemia.
Genetic variations of ANGPT1 and ZBTB7C are associated with increased infarct size in both mice and humans. ZBTB7C may modulate the ischemic response via neuronal apoptosis and dynamic collateralization and, in addition to ANGPT1, may serve as potential novel targets for treatments of cerebral ischemia.
已知脑缺血后缺血性损伤的程度受天然血管系统的影响。然而,非血管性和动态血管反应及其遗传基础尚未完全明确。
我们使用大脑中动脉闭塞模型,对来自33个近交系的235只小鼠进行了全基因组关联研究。采用高效混合模型关联方法考虑群体结构和遗传相关性。在因急性缺血性中风的体征和症状入院的M1闭塞患者中,研究了与小鼠品系调查中显著和提示性单核苷酸多态性相关基因的人类直系同源基因。
我们在小鼠中鉴定出4个全基因组显著和提示性单核苷酸多态性与梗死体积相关(rs3694965,P = 2.17×10(-7);rs31924033,P = 5.61×10(-6);rs32249495,P = 2.08×10(-7);rs3677406,P = 9.56×10(-6))。与血管生成素-1(ANGPT1)对应的rs32249495在人类隐性模型中也具有显著性,而与ZBTB7C对应的rs1944577在人类加性和显性遗传模型中均具有名义上的显著性。使用体外和体内缺血模型均显示ZBTB7C在内皮细胞中上调。
ANGPT1和ZBTB7C的基因变异与小鼠和人类梗死面积增加相关。ZBTB7C可能通过神经元凋亡和动态侧支循环调节缺血反应,并且除ANGPT1外,可能作为脑缺血治疗的潜在新靶点。