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October 15, 2004Journal of Clinical Investigation439 citationsOpen Access

Inhibition of diabetic nephropathy by a decoy peptide corresponding to the “handle” region for nonproteolytic activation of prorenin

AIAtsuhiro IchiharaMHMatsuhiko HayashiYKYuki Kaneshiro

Structured PICO

Does subcutaneous administration of handle region peptide prevent diabetic nephropathy in streptozotocin-induced diabetic rats?

P
Population
Streptozotocin-induced diabetic rats and nondiabetic control rats
I
Intervention
Subcutaneous administration of handle region peptide (HRP) via minipump
C
Comparator
Saline-containing minipump
O
Outcome
Metabolic and renal histological changes and renin-Ang system components in plasma and kidneyssurrogate

Inhibition of nonproteolytic activation of prorenin using a decoy peptide completely prevented the development of diabetic nephropathy in a rat model.

Abstract

We found that when a site-specific binding protein interacts with the "handle" region of the prorenin prosegment, the prorenin molecule undergoes a conformational change to its enzymatically active state.This nonproteolytic activation is completely blocked by a decoy peptide with the handle region structure, which competitively binds to such a binding protein.Given increased plasma prorenin in diabetes, we examined the hypothesis that the nonproteolytic activation of prorenin plays a significant role in diabetic organ damage.Streptozotocin-induced diabetic rats were treated with subcutaneous administration of handle region peptide.Metabolic and renal histological changes and the renin-Ang system components in the plasma and kidneys were determined at 8, 16, and 24 weeks following streptozotocin treatment.Kidneys of diabetic rats contained increased Ang I and II without any changes in renin, Ang-converting enzyme, or angiotensinogen synthesis.Treatment with the handle region peptide decreased the renal content of Ang I and II, however, and completely inhibited the development of diabetic nephropathy without affecting hyperglycemia.We propose that the nonproteolytic activation of prorenin may be a significant mechanism of diabetic nephropathy.The mechanism and substances causing nonproteolytic activation of prorenin may serve as important therapeutic targets for the prevention of diabetic organ damage.Nonstandard abbreviations used: ACE, Ang-converting enzyme; C rat, nondiabetic control rat with saline minipump; C + HRP rat, nondiabetic control rat with HRPcontaining minipump; DM + HRP rat, diabetic rat with HRP minipump; DM rat, diabetic rat with saline-containing minipump; HRP, handle region peptide; RAS, renin-Ang system.

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Cite This Study

Ichihara et al. (2004) studied this question.

synapsesocial.com/papers/6a856a36afd961f1253da450https://doi.org/10.1172/jci21398
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