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NCX1 内含子中的高变区富含短插入缺失多态性,与心血管特征相关。

Hypervariable intronic region in NCX1 is enriched in short insertion-deletion polymorphisms and showed association with cardiovascular traits.

机构信息

Institute of Molecular and Cell Biology, University of Tartu, Tartu, Estonia.

出版信息

BMC Med Genet. 2010 Jan 28;11:15. doi: 10.1186/1471-2350-11-15.

Abstract

BACKGROUND

Conserved non-coding regions (CNR) have been shown to harbor gene expression regulatory elements. Genetic variations in these regions may potentially contribute to complex disease susceptibility.

METHODS

We targeted CNRs of cardiovascular disease (CVD) candidate gene, Na(+)-Ca(2+) exchanger (NCX1) with polymorphism screening among CVD patients (n = 46) using DHPLC technology. The flanking region (348 bp) of the 14 bp indel in intron 2 was further genotyped by DGGE assay in two Eastern-European CVD samples: essential hypertension (HYPEST; 470 cases, 652 controls) and coronary artery disease, CAD (CADCZ; 257 cases, controls 413). Genotype-phenotype associations were tested by regression analysis implemented in PLINK. Alignments of primate sequences were performed by ClustalW2.

RESULTS

Nine of the identified NCX1 variants were either singletons or targeted by commercial platforms. The 14 bp intronic indel (rs11274804) was represented with substantial frequency in HYPEST (6.82%) and CADCZ (14.58%). Genotyping in Eastern-Europeans (n = 1792) revealed hypervariable nature of this locus, represented by seven alternative alleles. The alignments of human-chimpanzee-macaque sequences showed that the major human variant (allele frequency 90.45%) was actually a human-specific deletion compared to other primates. In humans, this deletion was surrounded by other short (5-43 bp) deletion variants and a duplication (40 bp) polymorphism possessing overlapping breakpoints. This indicates a potential indel hotspot, triggered by the initial deletion in human lineage. An association was detected between the carrier status of 14 bp indel ancestral allele and CAD (P = 0.0016, OR = 2.02; Bonferroni significance level alpha = 0.0045), but not with hypertension. The risk for the CAD development was even higher among the patients additionally diagnosed with metabolic syndrome (P = 0.0014, OR = 2.34). Consistent with the effect on metabolic processes, suggestive evidence for the association with heart rate, serum triglyceride and LDL levels was detected (P = 0.04).

CONCLUSIONS

Compared to SNPs targeted by large number of locus-specific and genome-wide assays, considerably less attention has been paid to short indel variants in the human genome. The data of genome dynamics, mutation rate and population genetics of short indels, as well as their impact on gene expressional profile and human disease susceptibility is limited. The characterization of NCX1 intronic hypervariable non-coding region enriched in human-specific indel variants contributes to this gap of knowledge.

摘要

背景

保守的非编码区(CNR)已被证明含有基因表达调控元件。这些区域的遗传变异可能潜在地导致复杂疾病的易感性。

方法

我们使用 DHPLC 技术在心血管疾病(CVD)候选基因 Na(+)-Ca(2+)交换器(NCX1)的 CNR 中靶向了 CVD 患者(n=46)的遗传变异筛查。内含子 2 中的 14 个碱基插入/缺失(INDEL)的侧翼区域(348 bp)在两个东欧 CVD 样本中通过 DGGE 分析进一步进行了基因分型:原发性高血压(HYPEST;470 例,652 例对照)和冠状动脉疾病,CAD(CADCZ;257 例,413 例对照)。通过在 PLINK 中实施回归分析测试了基因型-表型关联。通过 ClustalW2 对灵长类动物序列进行了比对。

结果

鉴定的 9 种 NCX1 变体要么是单倍体,要么是商业平台的目标。14 个碱基的内含子 INDEL(rs11274804)在 HYPEST(6.82%)和 CADCZ(14.58%)中具有相当大的频率。在东欧人群(n=1792)中的基因分型显示该基因座的高度可变性,由七个替代等位基因表示。人类-黑猩猩-猕猴序列的比对表明,主要的人类变体(等位基因频率 90.45%)实际上是与其他灵长类动物相比人类特有的缺失。在人类中,该缺失被其他短(5-43 bp)缺失变体和具有重叠断裂点的重复(40 bp)多态性所包围。这表明存在一个潜在的 INDEL 热点,由人类谱系中的初始缺失触发。在携带 14 个碱基 INDEL 祖先等位基因的情况下,与 CAD 之间存在关联(P=0.0016,OR=2.02;Bonferroni 显著性水平 alpha=0.0045),但与高血压无关。在另外诊断为代谢综合征的患者中,CAD 发展的风险更高(P=0.0014,OR=2.34)。与代谢过程的影响一致,提示与心率、血清甘油三酯和 LDL 水平之间存在关联(P=0.04)。

结论

与大量特定于基因座和全基因组检测的 SNP 相比,人类基因组中的短 INDEL 变体受到的关注要少得多。短 INDEL 的基因组动力学、突变率和群体遗传学数据,以及它们对基因表达谱和人类疾病易感性的影响是有限的。富含人类特异性 INDEL 变体的 NCX1 内含子高变异性非编码区的特征有助于填补这一知识空白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1799/2832636/ab6e9d3ecdbe/1471-2350-11-15-1.jpg

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