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首页> 外文期刊>Physiological genomics >Sex-specific effects of dual ET-1/ANG II receptor (Dear) variants in Dahl salt-sensitive/resistant hypertension rat model
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Sex-specific effects of dual ET-1/ANG II receptor (Dear) variants in Dahl salt-sensitive/resistant hypertension rat model

机译:双重ET-1 / ANG II受体(Dear)变体在达尔盐敏感性/耐药性高血压大鼠模型中的性别特异性作用

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摘要

Essential (polygenic) hypertension is a complex genetic disorder that remains a major risk factor for cardiovascular disease despite clinical advances, reiterating the need to elucidate molecular genetic mechanisms. Elucidation of susceptibility genes remains a challenge, however. Blood pressure (BP) regulatory pathways through angiotensin II (ANG II) and endothelin-1 (ET-1) receptor systems comprise a priori candidate susceptibility pathways. Here we report that the dual ET-1/ANG II receptor gene (Dear) is structurally and functionally distinct between Dahl salt-sensitive, hypertensive (S) and salt-resistant, normotensive (R) rats. The Dahl S S44/M74 variant is identical to the previously reported Dear cDNA with equivalent affinities for both ET-1 and ANG II, in contrast to Dahl R S44P/M74T variant, which exhibits absent ANG II binding but effective ET-1 binding. The S44P substitution localizes to the ANG II-binding domain predicted by the molecular recognition theory, providing compelling support of this theory. The Dear gene maps to rat chromosome 2 and cosegregates with BP in female F2(RxS) intercross rats with highly significant linkage (LOD 3.61) accounting for 14% of BP variance, but not in male F2(RxS) intercross rats. Altogether, the data suggest the hypothesis that modification of the critical balance between ANG II and ET-1 systems through variant Dear contributes to hypertension susceptibility in female F2(RxS) intercross rats. Further investigations are necessary to corroborate genetic linkage through congenic rat studies, to investigate putative gene interactions, and to show causality by transgenesis and/or intervention. More importantly, the data reiterate the importance of sex-specific factors in hypertension susceptibility.
机译:原发性(多基因)高血压是一种复杂的遗传性疾病,尽管临床上取得了进步,但仍是心血管疾病的主要危险因素,重申了阐明分子遗传机制的必要性。然而,易感基因的阐明仍然是一个挑战。通过血管紧张素II(ANG II)和内皮素-1(ET-1)受体系统的血压(BP)调节途径包括先验的候选药敏性途径。在这里我们报告说,双重ET-1 / ANG II受体基因(Dear)在Dahl盐敏感,高血压(S)和抗盐,血压正常(R)大鼠之间在结构和功能上是不同的。 Dahl S S44 / M74变体与先前报道的Dear cDNA具有相同的ET-1和ANG II亲和力,与Dahl R S44P / M74T变体相反,Dahl R S44P / M74T变体没有ANG II结合但有效地与ET-1结合。 S44P取代定位于分子识别理论预测的ANG II结合域,为该理论提供了有力的支持。 Dear基因定位于大鼠2号染色体,并在雌性F2(RxS)交配大鼠中与BP共分离,具有高度显着的连锁性(LOD 3.61),占BP变异的14%,但在雄性F2(RxS)交配大鼠中不存在。总的来说,这些数据提出了这样的假说,即通过变体Dear改变ANG II和ET-1系统之间的临界平衡会导致雌性F2(RxS)交配大鼠的高血压易感性。为了通过同类大鼠研究证实遗传联系,调查假定的基因相互作用以及通过转基因和/或干预显示因果关系,有必要进行进一步的研究。更重要的是,数据重申了性别特异性因素在高血压易感性中的重要性。

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