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对用Sca-1和c-Kit标记的谱系阴性小鼠骨髓细胞进行数量性状基因座分析。

QTL analyses of lineage-negative mouse bone marrow cells labeled with Sca-1 and c-Kit.

作者信息

Jawad Mays, Cole Clare, Zanker Abigail, Giotopoulos George, Fitch Simon, Talbot Christopher J, Plumb Mark

机构信息

Department of Genetics, University of Leicester, University Road, Leicester LE1 7RH, UK.

出版信息

Mamm Genome. 2008 Mar;19(3):190-8. doi: 10.1007/s00335-008-9097-x. Epub 2008 Feb 21.

Abstract

Differences in the number of functionally and/or phenotypically defined bone marrow cells in inbred mouse strains have been exploited to map quantitative trait loci (QTL) that determine the variation in cell frequency. To extend this approach to the differences in the stem/progenitor cell compartment in CBA/H and C57BL/6 mice, we have exploited the resolution of flow cytometry and the power of QTL analyses in 124 F(2) mice to analyze lineage-negative (Lin(-)) bone marrow cells according to the intensity of labeling with Sca-1 and c-Kit. In the Lin(-) Sca-1(+) c-Kit(+) enriched population, six QTL were identified: one significant and five suggestive. Whereas previous in vitro clonogenic, LTC-IC, day 35 CAFC, and flow cytometry each identified different QTL, our approach identified the same or very similar QTL at all three loci (chromosomes 1, 17, and 18) as well as QTL on chromosomes 6 and 10. In silico analyses implicate hematopoietic stem cell homing involving Cxcr4 and Cxcl12 as being the determining pathway. The mapping of the same or very similar QTL in independent studies using different assay(s) suggests a common genetic determinant, and thus reinforces the biological and genetic significance of the QTL. These data also suggest that mouse bone marrow cell subpopulations can be functionally, phenotypically, and genetically defined.

摘要

近交系小鼠品系中功能和/或表型定义的骨髓细胞数量差异已被用于定位决定细胞频率变异的数量性状基因座(QTL)。为了将这种方法扩展到CBA/H和C57BL/6小鼠干/祖细胞区室的差异研究中,我们利用流式细胞术的分辨率和对124只F(2)小鼠进行QTL分析的能力,根据Sca-1和c-Kit的标记强度分析谱系阴性(Lin(-))骨髓细胞。在Lin(-) Sca-1(+) c-Kit(+)富集群体中,鉴定出6个QTL:1个显著QTL和5个暗示性QTL。尽管之前的体外克隆形成、长期培养起始细胞(LTC-IC)、第35天的集落形成细胞(CAFC)和流式细胞术分析各自鉴定出不同的QTL,但我们的方法在所有3个基因座(染色体1、17和18)以及染色体6和10上鉴定出相同或非常相似的QTL。计算机分析表明涉及Cxcr4和Cxcl12的造血干细胞归巢是决定性途径。在使用不同检测方法的独立研究中对相同或非常相似QTL的定位表明存在共同的遗传决定因素,从而强化了QTL的生物学和遗传学意义。这些数据还表明小鼠骨髓细胞亚群可以在功能、表型和遗传上进行定义。

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