Journal of the American Society of Nephrology · 2008 · 140 citations · 30 references
HypertensionProrenin/renin ReceptorMolecular PharmacologyRenal FunctionSignaling PathwayCell SignalingEndocrine HypertensionMolecular PhysiologyG Protein-coupled ReceptorReceptor (Biochemistry)Vascular BiologyHuman ReninRenal PathophysiologyPharmacologyCell BiologySignal TransductionAngiotensin IiPhysiologyEndothelial DysfunctionMedicineNephrology
The prorenin/renin receptor is a recently discovered component of the renin-angiotensin system. The effects of aliskiren, a direct inhibitor of human renin, were compared with the handle region decoy peptide (HRP), which blocks the prorenin/renin receptor, in double-transgenic rats overexpressing the human renin and angiotensinogen genes. After 7 wk, all aliskiren-treated rats were alive, whereas mortality was 40% in vehicle-treated and 58% in HRP-treated rats. Aliskiren but not the HRP reduced BP and normalized albuminuria, cystatin C, and neutrophil gelatinase-associated lipocalin, a marker of renal tubular damage, to the levels of nontransgenic controls. In vitro, human renin and prorenin induced extracellular signal-regulated kinase 1/2 phosphorylation, independent of angiotensin II (AngII), in vascular smooth muscle cells. Preincubation with the HRP or aliskiren did not prevent renin- and prorenin-induced extracellular signal-regulated kinase 1/2 phosphorylation, whereas the MAP kinase kinase (MEK1/2) inhibitor PD98059 prevented both. In conclusion, renin inhibition but not treatment with the HRP protects against AngII-induced renal damage in double-transgenic rats. In addition, the in vitro data do not support the use of the HRP to block AngII-independent prorenin- or renin-mediated effects.
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Atsuhiro Ichihara, Matsuhiko Hayashi, Yuki Kaneshiro et al. · Journal of Clinical Investigation · 2004 · 436 citations
Peptide Therapeutics, Gastrointestinal Peptide Hormone, Renal Function +18
Yufeng Huang, S. Wongamorntham, J. Kasting et al. · Kidney International · 2005 · 424 citations · Full text
Molecular Physiology, Signal Transduction, Developmental Biology +13
Increased Plasma Inactive Renin in Diabetes Mellitus
John A. Luetscher, Fredric B. Kraemer, Darrell M. Wilson et al. · New England Journal of Medicine · 1985 · 335 citations