Cerebral vascular dysfunction in methionine synthase-deficient mice

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Abstract

Background - Methionine synthase (MS) catalyzes the folate-dependent remethylation of homocysteine to methionine. We tested the hypothesis that deficiency of MS impairs endothelial function in mice heterozygous for disruption of the Mtr gene, which encodes MS. Methods and Results - Plasma total homocysteine was similar in wild-type (Mtr+/+) and heterozygous (Mtr+/-) mice fed a control diet (4.5±0.3 and 5.3±0.4 μmol/L, respectively) and mildly elevated in Mtr+/+ and Mtr +/- mice fed a low-folate (LF) diet (7.5±0.7 and 9.6±1.2 μmol/L, respectively; P<0.001 versus control diet). Dilatation of cerebral arterioles to the endothelium-dependent dilator, acetylcholine (10 μmol/L) was blunted in Mtr+/- mice compared with Mtr+/+ mice fed the control diet (21±4 versus 32±4%; P<0.05). Both Mtr+/+ and Mtr+/- mice exhibited impaked dilatation of cerebral arterioles to acetylcholine when they were fed the LF diet (12±2 and 14±2%, respectively; P<0.01 versus Mtr +/+ mice fed the control diet). Elevated levels of superoxide and hydrogen peroxide were detected by confocal microscopy in cerebral arterioles of Mtr+/- mice fed the control diet and in both Mtr+/+ and Mtr+/- mice fed the LF diet. Conclusions - These findings demonstrate that defective homocysteine remethylation caused by deficiency of either MS or folate produces oxidative stress and endothelial dysfunction in the cerebral microcirculation of mice. © 2005 American Heart Association, Inc.

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Dayal, S., Devlin, A. M., McCaw, R. B., Liu, M. L., Arning, E., Bottiglieri, T., … Lentz, S. R. (2005). Cerebral vascular dysfunction in methionine synthase-deficient mice. Circulation, 112(5), 737–744. https://doi.org/10.1161/CIRCULATIONAHA.104.529248

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