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Differential abilities of nitrogen dioxide and nitrite to nitrate proteins in thylakoid membranes isolated from Arabidopsis leaves.


ABSTRACT: Exposure of Arabidopsis leaves to nitrogen dioxide (NO2) results in nitration of specific chloroplast proteins. To determine whether NO2 itself and/or nitrite derived from NO2 can nitrate proteins, Arabidopsis thylakoid membranes were isolated and treated with NO2-bubbled or potassium nitrite (KNO2) buffer, followed by protein extraction, electrophoresis, and immunoblotting using an anti-3-nitrotyrosine (NT) antibody. NO2 concentrations in the NO2-bubbled buffer were calculated by numerically solving NO2 dissociation kinetic equations. The two buffers were adjusted to have identical nitrite concentrations. Both treatments yielded an NT-immunopositive band that LC/MS identified as PSBO1. The difference in the band intensity between the 2 treatments was designated nitration by NO2. Both NO2 and nitrite mediated nitration of proteins, and the nitration ability per unit NO2 concentration was ?100-fold greater than that of nitrite.

SUBMITTER: Takahashi M 

PROVIDER: S-EPMC5117089 | biostudies-other | 2016 Oct

REPOSITORIES: biostudies-other

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Differential abilities of nitrogen dioxide and nitrite to nitrate proteins in thylakoid membranes isolated from Arabidopsis leaves.

Takahashi Misa M   Shigeto Jun J   Shibata Tatsuo T   Sakamoto Atsushi A   Morikawa Hiromichi H  

Plant signaling & behavior 20161001 10


Exposure of Arabidopsis leaves to nitrogen dioxide (NO<sub>2</sub>) results in nitration of specific chloroplast proteins. To determine whether NO<sub>2</sub> itself and/or nitrite derived from NO<sub>2</sub> can nitrate proteins, Arabidopsis thylakoid membranes were isolated and treated with NO<sub>2</sub>-bubbled or potassium nitrite (KNO<sub>2</sub>) buffer, followed by protein extraction, electrophoresis, and immunoblotting using an anti-3-nitrotyrosine (NT) antibody. NO<sub>2</sub> concentr  ...[more]

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