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Untangling HDL quantitative trait loci on mouse chromosome 5 and identifying Scarb1 and Acads as the underlying genes

机译:解开小鼠5号染色体上的HDL定量性状基因座并鉴定Scarb1和Acads为基础基因

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摘要

Two high-density lipoprotein cholesterol quantitative trait loci (QTL), Hdlq1 at 125 Mb and Hdlq8 at 113 Mb, were previously identified on mouse distal chromosome 5. Our objective was to identify the underlying genes. We first used bioinformatics to narrow the Hdlq1 locus to 56 genes. The most likely candidate, Scarb1 (scavenger receptor B1), was supported by gene expression data consistent with knockout and transgenic mouse models. Then we confirmed Hdlq8 as an independent QTL by detecting it in an intercross between NZB and NZW (LOD = 12.7), two mouse strains that have identical genotypes for Scarb1. Haplotyping narrowed this QTL to 9 genes; the most likely candidate was Acads (acyl-coenzymeA dehydrogenase, short chain). Sequencing showed that Acads had an amino acid polymorphism, Gly94Asp, in a conserved region; Western blotting showed that protein levels were significantly different between parental strains. A previously known spontaneous deletion causes loss of ACADS activity in BALB/cBy mice. We showed that HDL levels were significantly elevated in BALB/cBy compared with BALB/c mice and that this HDL difference cosegregated with the Acads mutation. We confirmed that Hdlq1 and Hdlq8 are independent QTL on mouse chromosome 5 and demonstrated that Scarb1 and Acads are the underlying genes.
机译:先前在小鼠远端染色体5上鉴定了两个高密度脂蛋白胆固醇定量性状位点(QTL),分别为125 Mb的Hdlq1和113 Mb的Hdlq8。我们的目标是鉴定基础基因。我们首先使用生物信息学将Hdlq1基因座范围缩小到56个基因。与敲除和转基因小鼠模型一致的基因表达数据支持了最可能的候选药物Scarb1(清道夫受体B1)。然后,我们通过在NZB和NZW(LOD = 12.7)之间的交配中检测到Hdlq8,确认其为独立的QTL,这两种小鼠品系具有Scarb1的相同基因型。单倍型将这个QTL缩小到9个基因。最有可能的候选人是Acads(酰基辅酶A脱氢酶,短链)。测序表明,Acads在保守区具有一个氨基酸多态性Gly94Asp。蛋白质印迹显示亲本菌株之间的蛋白质水平显着不同。先前已知的自发缺失导致BALB / cBy小鼠的ACADS活性丧失。我们显示,与BALB / c小鼠相比,BALB / cBy中的HDL水平显着升高,并且这种HDL差异与Acads突变共同分离。我们证实Hdlq1和Hdlq8是小鼠染色体5上的独立QTL,并证明Scarb1和Acads是潜在的基因。

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