Sharp M G, Fettes D, Brooker G, Clark A F, Peters J, Fleming S, Mullins J J
BBSRC Centre for Genome Research, Edinburgh (UK) University, UK.
Hypertension. 1996 Dec;28(6):1126-31. doi: 10.1161/01.hyp.28.6.1126.
Several recent studies have demonstrated that ablation of genes of the renin-angiotensin system can have wide-ranging and sometimes unexpected effects. Renin is directly involved in blood pressure regulation and is encoded by a single gene in most mammals. Wild mouse strains and some inbred laboratory strains have a duplicated renin gene (Ren-2), the physiological significance of which is unclear. Significant differences exist in the structure and expression of these renin genes, but as yet, no distinct biological function that distinguishes these genes has been defined. We have used gene targeting to discover the effects of inactivating the duplicated (Ren-2) gene in strain 129 mice, and we show that mice lacking the Ren-2 gene are viable and healthy. There appear to be no histopathological differences in renin-expressing tissues between Ren-2-null mice and their controls. Studies of our Ren-2-null mice allow, for the first time, a direct evaluation of the ability of the Ren-1d gene to regulate blood pressure in the absence of expression of the Ren-2 enzyme. We observed no alteration to blood pressure in adult mice homozygous for the mutated Ren-2 gene, even though the concentration of active renin is increased and of prorenin is decreased in plasma of these mice. Ren-1d is therefore capable of regulating normal blood pressure and despite a different tissue expression profile, is functionally equivalent to Ren-1c.
最近的几项研究表明,肾素-血管紧张素系统基因的缺失可能会产生广泛且有时出乎意料的影响。肾素直接参与血压调节,在大多数哺乳动物中由单个基因编码。野生小鼠品系和一些近交实验室品系有一个重复的肾素基因(Ren-2),其生理意义尚不清楚。这些肾素基因在结构和表达上存在显著差异,但迄今为止,尚未明确区分这些基因的独特生物学功能。我们利用基因靶向技术来探究在129品系小鼠中使重复的(Ren-2)基因失活的影响,结果表明缺乏Ren-2基因的小鼠能够存活且健康。Ren-2基因敲除小鼠与其对照之间,肾素表达组织似乎没有组织病理学差异。对我们的Ren-2基因敲除小鼠的研究首次使得在不存在Ren-2酶表达的情况下,能够直接评估Ren-1d基因调节血压的能力。我们观察到,成年纯合突变Ren-2基因小鼠的血压没有改变,尽管这些小鼠血浆中活性肾素浓度升高而肾素原浓度降低。因此,Ren-1d能够调节正常血压,尽管其组织表达谱不同,但在功能上等同于Ren-1c。