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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Congenic fine-mapping identifies a major causal locus for variation in the native collateral circulation and ischemic injury in brain and lower extremity
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Congenic fine-mapping identifies a major causal locus for variation in the native collateral circulation and ischemic injury in brain and lower extremity

机译:同基因精细定位可确定大脑和下肢的自然侧支循环和缺血性损伤的主要病因

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RATIONALE:: Severity of tissue injury in occlusive disease is dependent on the extent (number and diameter) of collateral vessels, which varies widely among healthy mice and humans. However, the causative genetic elements are unknown. Recently, much of the variation among different mouse strains, including C57Bl/6J (B6, high extent) and BALB/cByJ (Bc, low extent), was linked to a quantitative trait locus on chromosome 7 (Candq1). OBJECTIVE:: We used congenic mapping to refine Candq1 and its candidate genes to create an isogenic strain set with large differences in collateral extent to assess their impact and the impact of Candq1, alone, on ischemic injury. METHODS AND RESULTS:: Six congenic strains possessing portions of Candq1 introgressed from B6 into Bc were generated and phenotyped. Candq1 was refined from 27 to 0.737 Mb with full retention of effect, that is, return or rescue of phenotypes from the poor values in Bc to nearly those of wild-type B6 in the B6/B6 congenic mice as follows: 83% rescue of low pial collateral extent and 4.5-fold increase in blood flow and 85% reduction of infarct volume after middle cerebral artery occlusion; 54% rescue of low skeletal muscle collaterals and augmented recovery of perfusion (83%) and function after femoral artery ligation. Gene deletion and in silico analysis further delineated the candidate genes. CONCLUSIONS:: We have significantly refined Candq1 (now designated determinant of collateral extent 1; Dce1), demonstrated that genetic background-dependent variation in collaterals is a major factor underlying differences in ischemic tissue injury, and generated a congenic strain set with wide allele dose-dependent variation in collateral extent for use in investigations of the collateral circulation.
机译:理由:闭塞性疾病中组织损伤的严重程度取决于附带血管的程度(数量和直径),在健康小鼠和人类之间差异很大。但是,致病遗传因素尚不清楚。最近,不同小鼠品系之间的许多变异,包括C57Bl / 6J(B6,高水平)和BALB / cByJ(Bc,低水平),都与7号染色体(Candq1)的数量性状基因座相关。目的::我们使用同基因作图法完善了Candq1及其候选基因,以创建一个侧枝范围差异较大的等基因菌株集,以评估其和单独使用Candq1对缺血性损伤的影响。方法和结果:产生并表型化了6个具有部分Candq1从B6渗入Bc的同基因菌株。将Candq1从27 Mb精炼到0.737 Mb,具有完全保留的作用,即在B6 / B6同基因小鼠中将表型从Bc的低值恢复为野生型B6的值,如下所示:83%的大脑中动脉闭塞后,皮层侧支程度低,血流量增加4.5倍,梗塞体积减少85%;股动脉结扎后,可挽救54%的低骨骼肌侧支并提高灌注恢复(83%)和功能。基因删除和计算机分析进一步确定了候选基因。结论::我们对Candq1(现已指定侧支范围1; Dce1)进行了显着改进,证明侧支遗传背景相关变异是缺血性组织损伤差异的主要因素,并产生了具有广泛等位基因剂量的同系菌株依赖程度的侧支范围变化,用于侧支循环的研究。

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