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利用 LightCycler® 仪器快速基因分型人类肾素(REN)基因:在选定的杂交探针区域内鉴定出人意料的核苷酸取代。

Rapid genotyping of the human renin (REN) gene by the LightCycler® instrument: identification of unexpected nucleotide substitutions within the selected hybridization probe area.

机构信息

Department of Medical Biochemistry, Stavanger University Hospital, Stavanger, Norway.

出版信息

Dis Markers. 2010;29(5):243-9. doi: 10.3233/DMA-2010-0754.

DOI:10.3233/DMA-2010-0754
PMID:21206009
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3835563/
Abstract

Preeclampsia is a serious disorder affecting nearly 3% of all in the Western world. It is associated with hypertension and proteinuria, and several lines of evidence suggest that the renin-angiotensin system (RAS) may be involved in the development of hypertension at different stages of a preeclamptic pregnancy. In this study, we developed rapid genotyping assays on the LightCycler® instrument to allow the detection of genetic variants in the renin gene (REN) that may predispose to preeclampsia. The method is based on real-time PCR and allele-specific hybridization probes, followed by fluorescent melting curve analysis to expose a change in melting temperature (Tm). Ninety-two mother-father-child triads (n=276) from preeclamptic pregnancies were genotyped for three haplotype-tagging single nucleotide polymorphisms (htSNPs) in REN. All three htSNPs (rs5705, rs1464816 and rs3795575) were successfully genotyped. Furthermore, two unexpected nucleotide substitutions (rs11571084 and rs61757041) were identified within the selected hybridization probe area of rs1464816 and rs3795575 due to aberrant melting peaks. In conclusion, genotyping on the LightCycler® instrument proved to be rapid and highly reproducible. The ability to uncover additional nucleotide substitutions is particularly important in that it allows the identification of potentially etiological variants that might otherwise be overlooked by other genotyping methods.

摘要

子痫前期是一种严重的疾病,影响了西方世界近 3%的人群。它与高血压和蛋白尿有关,有几条证据表明肾素-血管紧张素系统(RAS)可能参与子痫前期妊娠不同阶段的高血压发展。在这项研究中,我们在 LightCycler®仪器上开发了快速基因分型检测方法,以检测可能导致子痫前期的肾素基因(REN)中的遗传变异。该方法基于实时 PCR 和等位基因特异性杂交探针,然后进行荧光熔解曲线分析以暴露熔解温度(Tm)的变化。92 个来自子痫前期妊娠的母子三人组(n=276)被用于 REN 中的三个单核苷酸多态性(htSNP)进行基因分型。所有三个 htSNP(rs5705、rs1464816 和 rs3795575)都成功进行了基因分型。此外,由于异常的熔解峰,在 rs1464816 和 rs3795575 的所选杂交探针区域内发现了两个意外的核苷酸取代(rs11571084 和 rs61757041)。总之,LightCycler®仪器上的基因分型证明快速且高度可重复。发现额外核苷酸取代的能力尤为重要,因为它可以识别可能被其他基因分型方法忽略的潜在病因变异。

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1
Rapid genotyping of the human renin (REN) gene by the LightCycler® instrument: identification of unexpected nucleotide substitutions within the selected hybridization probe area.利用 LightCycler® 仪器快速基因分型人类肾素(REN)基因:在选定的杂交探针区域内鉴定出人意料的核苷酸取代。
Dis Markers. 2010;29(5):243-9. doi: 10.3233/DMA-2010-0754.
2
Maternal angiotensinogen (AGT) haplotypes, fetal renin (REN) haplotypes and risk of preeclampsia; estimation of gene-gene interaction from family-triad data.母体血管紧张素原 (AGT) 单倍型、胎儿肾素 (REN) 单倍型与子痫前期风险;来自家系三员数据的基因-基因相互作用估计。
BMC Med Genet. 2010 Jun 10;11:90. doi: 10.1186/1471-2350-11-90.
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The C4280A (rs5705) gene polymorphism of the renin (REN) gene is associated with risk of developing coronary artery disease, but not with restenosis after coronary stenting.肾素(REN)基因的C4280A(rs5705)基因多态性与冠状动脉疾病的发生风险相关,但与冠状动脉支架置入术后再狭窄无关。
Exp Mol Pathol. 2015 Aug;99(1):128-32. doi: 10.1016/j.yexmp.2015.06.012. Epub 2015 Jun 20.
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The association between maternal and foetal REN gene polymorphisms and preeclampsia/eclampsia: A hybrid design study.母亲和胎儿 REN 基因多态性与子痫前期/子痫的关联:一项混合设计研究。
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Renin gene rs1464816 polymorphism contributes to chronic kidney disease progression in ADPKD.肾素基因rs1464816多态性促进常染色体显性多囊肾病中慢性肾脏病的进展。
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Comparative expression profiles for KiSS-1 and REN genes in preeclamptic and healthy placental tissues.比较 KiSS-1 和 REN 基因在子痫前期和健康胎盘组织中的表达谱。
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