Charchar F J, Kapuscinski M K, Harrap S B
Department of Physiology, University of Melbourne, Parkville, Bone Marrow Transplant Unit, Alfred Hospital, Prahran, Victoria, Australia.
Hypertension. 1998 Oct;32(4):705-9. doi: 10.1161/01.hyp.32.4.705.
Nerve growth factor (NGF) controls the growth of sympathetic nerves and is increased in young spontaneously hypertensive rats (SHR). The NGF gene has been linked genetically with hypertension in the SHR strain and may explain high NGF mRNA levels. To test for genetic linkage between the NGF gene and its expression in vivo, we examined renal NGF mRNA levels in male SHR, control Donryu rats (DRY), and F2 rats derived from SHR and DRY at ages 2, 4, 10, and 20 weeks. Tail-cuff blood pressure was measured at 4, 10, and 20 weeks of age. NGF mRNA levels in SHR (NGF genotype: SS) were higher than those in DRY (NGF genotype: DD) at 2, 4, and 10 weeks of age (P<0.0001) but the same at 20 weeks of age. In the F2 generation, the S allele was associated with significantly (P=0.01) higher renal NGF mRNA levels at 2 weeks of age. Mean NGF mRNA levels fell (P=0.01) with age in F2 rats, and the difference between SS and DD genotype F2 rats diminished at older ages and was not significant. In F2 rats there was a positive correlation between the number of NGF S alleles inherited and tail-cuff pressure (P<0.007). Our findings indicate that the NGF locus is an important regulator of NGF mRNA levels. It is likely that mutations in or near the NGF gene explain in part high early NGF gene expression in SHR.
神经生长因子(NGF)控制交感神经的生长,且在年轻的自发性高血压大鼠(SHR)中水平升高。NGF基因在SHR品系中与高血压存在遗传关联,这可能解释了NGF mRNA的高表达水平。为了检测NGF基因与其体内表达之间的遗传联系,我们检测了雄性SHR、对照的东京大鼠(DRY)以及由SHR和DRY杂交产生的F2代大鼠在2、4、10和20周龄时肾脏中NGF mRNA的水平。在4、10和20周龄时测量尾套法血压。在2、4和10周龄时,SHR(NGF基因型:SS)的NGF mRNA水平高于DRY(NGF基因型:DD)(P<0.0001),但在20周龄时两者相同。在F2代中,S等位基因在2周龄时与显著更高的肾脏NGF mRNA水平相关(P = 0.01)。F2代大鼠的平均NGF mRNA水平随年龄下降(P = 0.01),SS和DD基因型的F2代大鼠之间的差异在年龄较大时减小且不显著。在F2代大鼠中,继承的NGF S等位基因数量与尾套法血压之间存在正相关(P<0.007)。我们的研究结果表明,NGF基因座是NGF mRNA水平的重要调节因子。NGF基因内部或附近的突变可能部分解释了SHR早期NGF基因的高表达。