Oxygen Sensitivity of a Nitrogenase-Like Protochlorophyllide Reductase from the Cyanobacterium Leptolyngbya boryana

被引:34
作者
Yamamoto, Haruki [1 ]
Kurumiya, Shohei [1 ]
Ohashi, Rie [1 ]
Fujita, Yuichi [1 ,2 ]
机构
[1] Nagoya Univ, Grad Sch Bioagr Sci, Chikusa Ku, Nagoya, Aichi 4648601, Japan
[2] Japan Sci & Technol Agcy, Kawaguchi, Saitama 3320012, Japan
基金
日本学术振兴会; 日本科学技术振兴机构;
关键词
Chlorophyll biosynthesis; Cyanobacteria; Dark-operative protochlorophyllide oxidoreductase; Leptolyngbya boryana; Nitrogenase-like enzyme; INDEPENDENT CHLOROPHYLL BIOSYNTHESIS; WATER-WATER CYCLE; PLECTONEMA-BORYANUM; PHOTOSYSTEM-I; BCHN-BCHB; L-PROTEIN; DARK; GENE; INACTIVATION; IDENTIFICATION;
D O I
10.1093/pcp/pcp111
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Dark-operative protochlorophyllide (Pchlide) oxidoreductase (DPOR) is a nitrogenase-like enzyme that catalyzes Pchlide reduction, the penultimate step of chlorophyll a biosynthesis. DPOR is distributed widely among oxygenic phototrophs such as cyanobacteria, green algae and gymnosperms. To determine how DPOR operates in oxygenic photosynthetic cells, we constructed two shuttle vectors for overexpression of Strep-tagged L-protein (ChlL) and Strep-tagged NB-protein (ChlN-ChlB) in Leptolyngbya boryana (formerly Plectonema boryanum) and introduced them into mutants lacking chlL. and chlB. Both transformants restored the ability to produce chlorophyll in the dark. The DPOR activity was reconstituted by L-protein and NB-protein purified from the transformants under anaerobic conditions. L-protein activity disappeared within 5 min of exposure to air while NB-protein activity persisted for >30 min in an aerobic condition, indicating that the L-protein of DPOR components is the primary target of oxygen in cyanobacterial cells. These results suggested that the DPOR from an oxygenic photosynthetic organism did not acquire oxygen tolerance during evolution; but that the cyanobacterial cell developed a mechanism to protect DPOR from oxygen.
引用
收藏
页码:1663 / 1673
页数:11
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