首页> 外文期刊>Hypertension research: Official journal of the Japanese Society of Hypertension >Multiple blood pressure loci with opposing blood pressure effects on rat chromosome 1 in a homologous region linked to hypertension on human chromosome 15
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Multiple blood pressure loci with opposing blood pressure effects on rat chromosome 1 in a homologous region linked to hypertension on human chromosome 15

机译:在与人类15号染色体上的高血压相关的同源区域中,多个血压位点对大鼠1号染色体具有相反的血压影响

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摘要

Genetic dissection of blood pressure (BP) quantitative trait loci (QTLs) in rats has facilitated the fine-mapping of regions linked to the inheritance of hypertension. The goal of the current study was to further fine-map one such genomic region on rat chromosome 1 (BPQTL1b1), the homologous region of which on human chromosome 15 harbors BP QTLs, as reported by four independent studies. Of the six substrains constructed and studied, the systolic BP of two of the congenic strains were significantly lower by 36 and 27mmHg than that of the salt-sensitive (S) rat (P<0.0001, P = 0.0003, respectively). The congenic segments of these two strains overlapped between 135.12 and 138.78Mb and contained eight genes and two predicted miRNAs. None of the annotations had variants within expressed sequences. These data taken together with the previous localization resolved QTL1b1 with a 70% improvement from the original 7.39Mb to the current 2.247Mb interval. Furthermore, the systolic BP of one of the congenic substrains was significantly higher by 20mmHg (P<0.0001) than the BP of the S rat. The limits of this newly identified QTL with a BP increasing effect (QTL1b1a) were between 134.12 and 135.76 Mb, spanning 1.64 Mb, containing two protein-coding genes, Mctp2 and Rgma, and a predicted miRNA. There were four synonymous variants within Mctp2. These data provide evidence for two independent BP QTLs with opposing BP effects within the previously identified BP QTL1b1 region. Additionally, these findings illustrate the complexity underlying the genetic mechanisms of BP regulation, wherein inherited elements beyond protein-coding sequences or known regulatory regions could be operational.
机译:大鼠的血压(BP)定量性状基因位点(QTL)的遗传解剖促进了与高血压遗传相关的区域的精细定位。根据四项独立研究的报道,本研究的目的是进一步精细绘制大鼠染色体1(BPQTL1b1)上的一个此类基因组区域,该染色体在人类15号染色体上的同源区域带有BP QTL。在构建和研究的六个亚菌株中,其中两个同基因菌株的收缩压比盐敏感性(S)大鼠的收缩压显着降低了36和27mmHg(分别为P <0.0001,P = 0.0003)。这两个菌株的同基因片段在135.12和138.78Mb之间重叠,包含八个基因和两个预测的miRNA。注释中没有一个在表达的序列内具有变体。这些数据与以前的本地化结果一起解析了QTL1b1,从原来的7.39Mb到当前的2.247Mb间隔提高了70%。此外,同基因亚菌株之一的收缩压比S大鼠的BP高20mmHg(P <0.0001)。这个新发现的具有BP增强作用的QTL(QTL1b1a)的限度在134.12至135.76 Mb之间,跨度为1.64 Mb,包含两个蛋白质编码基因Mctp2和Rgma,以及一个预测的miRNA。 Mctp2中有四个同义词。这些数据提供了在先前确定的BP QTL1b1区域内具有相反BP效应的两个独立BP QTL的证据。此外,这些发现说明了BP调节遗传机制的潜在复杂性,其中超出蛋白质编码序列或已知调节区域的遗传元件可能起作用。

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