Medical College of Wisconsin
CTSIResearch InformaticsREDCap

Nitric oxide synthase activity and isoforms in rat renal vasculature. Hypertension 2000 Jan;35(1 Pt 2):337-41

Date

01/21/2000

Pubmed ID

10642321

DOI

10.1161/01.hyp.35.1.337

Scopus ID

2-s2.0-0033984221 (requires institutional sign-in at Scopus site)   81 Citations

Abstract

Experiments were performed to quantify nitric oxide synthase (NOS) activity and identify the NOS isoforms present in the Sprague-Dawley rat renal vasculature. NOS enzymatic activity was measured by adding [(3)H]arginine to microdissected renal blood vessels and quantifying the conversion to [(3)H]citrulline by reverse-phase high-performance liquid chromatography. Total NOS activity was greatest in microdissected vasa recta (123+/-41 pmol. mg(-1). h(-1), n=5) and significantly less in glomeruli (46+/-9 pmol. mg(-1). h(-1), n=6) and afferent arterioles (42+/-10 pmol. mg(-1). h(-1), n=6) and averaged <5 pmol. mg(-1). h(-1) in arcuate (n=8) and interlobular (n=9) arteries. Addition of 1.0 mmol/L EDTA to the reaction decreased NOS activity to <5 pmol. mg(-1). h(-1) in afferent arterioles, glomeruli, and vasa recta (n=5 each), indicating that the NOS enzymatic activity in these segments is primarily a result of constitutive NOS. Both neuronal and endothelial NOS mRNA were identified in each vascular segment by reverse transcription-polymerase chain reaction, but inducible NOS mRNA was detected only in microdissected arcuate arteries. The present experiments indicate that the vasa recta, glomeruli, and afferent arterioles contain large amounts of calcium-dependent NOS enzymatic activity and that neuronal NOS and endothelial NOS mRNA are present in these segments.

Author List

Mattson DL, Wu F



MESH terms used to index this publication - Major topics in bold

Animals
Aorta
Enzyme Activation
Male
Microcirculation
Nitric Oxide Synthase
Nitric Oxide Synthase Type I
Nitric Oxide Synthase Type II
Nitric Oxide Synthase Type III
RNA, Messenger
Rats
Rats, Sprague-Dawley
Renal Artery
Renal Circulation
Reverse Transcriptase Polymerase Chain Reaction