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KMID : 0368419970400020073
Journal of Plant Biology
1997 Volume.40 No. 2 p.73 ~ p.79
Decrease in Carbamylation of Rubisco by High CO, Concentration is Due to Decrease of Rubisco Activase in Kidney Bean
Roh, Kwang Soo
Kim, In Seob/Kim, Byung Weon/Song, Jong Suk/Chung, Hwa Sook/Song, Seung Dal
Abstract
Decrease in rubisco activation at high CO_2 concentration was caused by decrease in carbamylation of rubisco (Roh et al., 1996). However, it is unclear whether decrease in carbamylation rate at high CO_2 concentration is due to decrease in activity itself or content of rubisco activase. To clarify this ambiguity, investigation was performed to determine effects of CO_2 concentration on rubisco activase with kidney bean (Phaseolus vulgaris L.) leaves grown at normal CO_2 (350 ppm) and high CO_2 (650 ppm) concentration. The analysis of Western blotting showed that the 50 and 14.5 kD polypeptides were identified immunochemically as the large and small subunits of rubisco in the preparation, respectively. For the 14.5 kD small subunit, the degree of intensity at high CO_2 concentration was similar to that at normal CO_2 concentration. For the 50 kD large sububit, however, the intensity of a band at high CO_2 concentration was significantly higher than that at normal CO_2 concentration, indicating that only the large subunit is affected by high CO_2 concentration. The analysis of Western immunoblotting showed two major polypeptides at 46 and 42 kD which were identified as rubisco activase subunits. The intensities of two bands were shown to be higher at normal CO_2 than high CO_2 concentration. These data indicate that decrease of carbamylation resulting from increase of CO_2 concentration was caused by rubisco activase. Finally, by employing ATP hydrolysis assay and ELISA, we also observed a significant decrease in both activity and content of rubisco activase as CO_2 concentration was raised from normal to high Co_2 concentration. These results suggest that decrease in rubisco carbamylation at high CO_2 concentration is caused by activity itself and/or content of rubisco activase.
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