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鉴定出一个位于 11 号染色体上的基因座,可调控小鼠颈总动脉中白细胞浸润。

Identification of a genetic locus on chromosome 11 that regulates leukocyte infiltration in mouse carotid artery.

机构信息

University of Rochester, Aab Cardiovascular Research Institute, 601 Elmwood Ave, Box CVRI, Rochester, NY 14642, USA.

出版信息

Arterioscler Thromb Vasc Biol. 2013 May;33(5):1014-9. doi: 10.1161/ATVBAHA.112.301129. Epub 2013 Feb 28.

Abstract

OBJECTIVE

We demonstrated that inflammatory cells and intima-media thickening are increased in carotids exposed to low-blood flow in the SJL/J (SJL) strain compared with other mouse strains. We hypothesized that the extent of inflammation associated with intima-media thickening is a genetically regulated trait.

APPROACH AND RESULTS

We performed a whole genome approach to measure leukocyte infiltration in the carotid intima as a quantitative trait in a genetic cross between C3HeB/FeJ (C3H/F) and SJL mice. Immunostaining for CD45(+) (a pan-specific leukocyte marker) was performed on carotids from C3H/F, SJL, F1, and N2 progeny to measure leukocyte infiltration. We identified a nearly significant quantitative trait locus for CD45(+) on chromosome (chr) 11 (17 cM, LOD=2.3; significance was considered at threshold P=0.05). Interval mapping showed that the CD45(+) locus on chr 11 accounted for 8% of the variation in the logarithm of odds backcross. Importantly, the CD45(+) locus colocalized with the intima-modifier 2 (Im2) locus, which controls 17% of intima variation. We created 2 Im2 congenic lines of mice (C3H/F.SJL.11.1 and C3H/F.SJL.11.2) to better understand the regulation of intima-media thickening by the chr 11 locus. The C3H/F.SJL.11.1 congenic mouse showed ≈30% of the SJL trait, confirming that CD45(+) cell infiltration contributed to the intima trait.

CONCLUSIONS

We discovered a novel locus on chr 11 that controls leukocyte infiltration in the carotid. Importantly, this locus overlaps with our previously published Im2 locus on chr 11. Our study reveals a potential mechanistic relationship between leukocyte infiltration and intima-media thickening in response to decreased blood flow.

摘要

目的

我们发现,与其他小鼠品系相比,暴露于低血流环境中的 SJL/J(SJL)品系颈动脉中的炎症细胞和中膜增厚增加。我们假设与中膜增厚相关的炎症程度是一种受基因调控的特征。

方法和结果

我们采用全基因组方法,在 C3HeB/FeJ(C3H/F)和 SJL 小鼠的遗传杂交中,将颈动脉内膜中的白细胞浸润作为定量特征进行测量。对 C3H/F、SJL、F1 和 N2 后代的颈动脉进行 CD45(+)(一种泛特异性白细胞标记物)免疫染色,以测量白细胞浸润。我们在染色体 11 上(17cM,LOD=2.3;在阈值 P=0.05 时被认为具有显著性)发现了一个 CD45(+)的几乎显著的数量性状位点。区间作图显示,染色体 11 上的 CD45(+)位点解释了对数优势回交的 8%的变异性。重要的是,CD45(+)位点与内膜修饰 2(Im2)位点共定位,后者控制了 17%的内膜变异性。我们创建了 2 个 Im2 近交系小鼠(C3H/F.SJL.11.1 和 C3H/F.SJL.11.2),以更好地理解染色体 11 位点对中膜增厚的调节作用。C3H/F.SJL.11.1 近交系小鼠表现出约 30%的 SJL 特征,证实了 CD45(+)细胞浸润有助于内膜特征。

结论

我们在染色体 11 上发现了一个控制颈动脉白细胞浸润的新位点。重要的是,这个位点与我们之前在染色体 11 上发表的 Im2 位点重叠。我们的研究揭示了白细胞浸润与血流减少引起的中膜增厚之间的潜在机制关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9f6/3661006/9863082ecaf3/nihms459514f1a.jpg

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本文引用的文献

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Inflammation and coronary artery disease: insights from genetic studies.炎症与冠状动脉疾病:遗传学研究的新视角。
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