Miyake Chikahiro, Shinzaki Yuki, Nishioka Minori, Horiguchi Sayaka, Tomizawa Ken-Ichi
Research Institute of Innovative Technology for the Earth (RITE), 9-2 Kizugawadai, Soraku-gun, Kyoto, 619-0292 Japan.
Plant Cell Physiol. 2006 Feb;47(2):200-10. doi: 10.1093/pcp/pci235. Epub 2005 Dec 7.
We evaluated the H2O2-scavenging activity of the water-water cycle (WWC) in illuminated intact chloroplasts isolated from tobacco leaves. Illumination under conditions that limited photosynthesis [red light (>640 nm), 250 micromol photons m(-2) s(-1) in the absence of HCO3-] caused chloroplasts to take up O2 and accumulate H2O2. Concomitant with the O2 uptake, both ascorbate peroxidase (APX) and glyceraldehyde 3-phosphate dehydrogenase (GAPDH) lost their activities. However, superoxide dismutase (SOD), monodehydroascorbate radical reductase (MDAR), dehydroascorbate reductase (DHAR) and glutathione reductase (GR) activities remained unaffected. The extent to which the photosynthetic linear electron flow decreased was small compared with the decline in APX activity. Therefore, the loss of APX activity lowered the electron flux through the WWC, as evidenced by a decrease in relative electron flux through PSII [Phi(PSII)xPFD]. To verify these interpretations, we created a transplastomic tobacco line in which an H2O2-insensitive APX from the red alga, Galdieria partita, was overproduced in the chloroplasts. In intact transplastomic chloroplasts which were illuminated under conditions that limited photosynthesis, neither O2 uptake nor H2O2 accumulation occurred. Furthermore, the electron flux through the WWC and the activity of GAPDH were maintained. The present work is the first report of APX inactivation by endogenous H2O2 in intact chloroplasts.
我们评估了从烟草叶片分离出的光照下完整叶绿体中水-水循环(WWC)的过氧化氢清除活性。在限制光合作用的条件下光照[红光(>640 nm),在不存在HCO3-的情况下为250微摩尔光子·米-2·秒-1]导致叶绿体吸收氧气并积累过氧化氢。与氧气吸收同时发生的是,抗坏血酸过氧化物酶(APX)和甘油醛-3-磷酸脱氢酶(GAPDH)均失去活性。然而,超氧化物歧化酶(SOD)、单脱氢抗坏血酸自由基还原酶(MDAR)、脱氢抗坏血酸还原酶(DHAR)和谷胱甘肽还原酶(GR)的活性未受影响。与APX活性的下降相比,光合线性电子流下降的程度较小。因此,APX活性的丧失降低了通过水-水循环的电子通量,通过PSII的相对电子通量[Phi(PSII)xPFD]的降低证明了这一点。为了验证这些解释,我们创建了一个转叶绿体烟草品系,其中来自红藻加尔迪埃利亚 partita的对过氧化氢不敏感的APX在叶绿体中过量表达。在限制光合作用条件下光照的完整转叶绿体中,既不发生氧气吸收也不发生过氧化氢积累。此外,通过水-水循环的电子通量和GAPDH的活性得以维持。本研究是完整叶绿体中内源性过氧化氢使APX失活的首次报道。