He Q, Vermaas W
Department of Plant Biology and Center for the Study of Early Events in Photosynthesis, Arizona State University, Box 871601, Tempe, AZ 85287-1601, USA.
Proc Natl Acad Sci U S A. 1998 May 12;95(10):5830-5. doi: 10.1073/pnas.95.10.5830.
Transcript accumulation and translation of psbA as well as processing of the D1 precursor protein were investigated in relation to chlorophyll availability in vivo in cyanobacterial strains lacking photosystem I (PS I). The psbA transcript level was almost independent of chlorophyll availability and was approximately 3-fold lower in darkness than in continuous light (5 microE m-2 s-1). Upon illumination, it reached a steady-state level within several hours. Upon growth under light-activated heterotrophic growth conditions (LAHG) in the PS I-less strain, D1 synthesis occurred immediately upon illumination. However, in PS I-less/chlL- cells, which lacked the light-independent chlorophyll biosynthesis pathway and had very low chlorophyll levels after LAHG growth, very little D1 synthesis occurred upon illumination, and the synthesis rate increased with time. This result suggests a translational control of D1 biosynthesis related to chlorophyll availability. Upon illumination, initially a high level of the nonprocessed D1 precursor was observed by pulse labeling and immunodetection in LAHG-grown PS I-less/chlL- cells but not in PS I-less cells. A significant amount of the D1 precursor eventually was processed to mature D1, and the half-life of the D1 precursor decreased as the chlorophyll content of the cells increased. The D1 processing enzyme CtpA was found to be present at similar levels regardless illumination or chlorophyll levels. We conclude that, directly or indirectly, chlorophyll availability is needed for D1 translation as well as for efficient processing of the D1 precursor.
在缺乏光系统I(PS I)的蓝藻菌株中,研究了psbA的转录本积累、翻译以及D1前体蛋白的加工与体内叶绿素可用性的关系。psbA转录本水平几乎与叶绿素可用性无关,在黑暗中比在连续光照(5微爱因斯坦·米-2·秒-1)下低约3倍。光照后,它在数小时内达到稳态水平。在无光系统I的菌株中,在光激活异养生长条件(LAHG)下生长时,光照后立即发生D1合成。然而,在缺乏光独立叶绿素生物合成途径且在LAHG生长后叶绿素水平非常低的无光系统I/chlL-细胞中,光照后几乎没有D1合成,且合成速率随时间增加。这一结果表明D1生物合成存在与叶绿素可用性相关的翻译控制。光照后,通过脉冲标记和免疫检测,在LAHG培养的无光系统I/chlL-细胞中最初观察到高水平的未加工D1前体,但在无光系统I细胞中未观察到。大量的D1前体最终被加工成成熟的D1,并且随着细胞叶绿素含量的增加,D1前体的半衰期缩短。发现D1加工酶CtpA的存在水平与光照或叶绿素水平无关。我们得出结论,D1翻译以及D1前体的有效加工直接或间接地需要叶绿素可用性。