Hughes Joseph L, Rutherford A William, Sugiura Miwa, Krausz Elmars
Research School of Chemistry, The Australian National University, Canberra, ACT 0200, Australia.
Photosynth Res. 2008 Oct-Dec;98(1-3):199-206. doi: 10.1007/s11120-008-9330-1. Epub 2008 Sep 3.
We monitored illuminated-minus-dark absorption difference spectra in the range of 450-1100 nm induced by continuous illumination at 8 K of photosystem II (PSII) core complexes from Thermosynechococcus elongatus. The photo-induced oxidation of the side-path donors Cytb(559), beta-carotene and chlorophyll Z, as well as the concomitant stable (t(1/2) > 1 s) reduction of the first plastoquinone electron acceptor, Q(A) (monitored by the well-known 'C550' shift), were quantified as a function of the absorbed photons per PSII. The Q(A) photo-induced reduction data can be described by three distinct quantum efficiency distributions: (i) a very high efficiency of approximately 0.5-1, (ii) a middle efficiency with a very large range of approximately 0.014-0.2, and (iii) a low efficiency of approximately 0.002. Each of the observed side-path donors exhibited similar quantum efficiency distributions, which supports a branched pathway model for side-path oxidation where beta-carotene is the immediate electron donor to the photo-oxidized chlorophyll (P680(+)). The yields of the observed side-path donors account quantitatively for the wide middle efficiency range of photo-induced Q(A) reduction, but not for the PSII fractions that exhibit the highest and lowest efficiencies. The high-efficiency component may be due to Tyr(Z) oxidation. A donor that does not exhibit an identified absorption in the visible-near-IR region is mainly responsible for the lowest efficiency component.
我们监测了来自嗜热栖热放线菌的光系统II(PSII)核心复合物在8K下连续光照诱导的450-1100nm范围内的光照减暗吸收差异光谱。侧链供体细胞色素b(559)、β-胡萝卜素和叶绿素Z的光诱导氧化,以及伴随的第一个质体醌电子受体Q(A)的稳定(半衰期>1秒)还原(通过著名的“C550”位移监测),被定量为每个PSII吸收光子的函数。Q(A)光诱导还原数据可以用三种不同的量子效率分布来描述:(i)约0.5-1的非常高的效率,(ii)约0.014-0.2的非常大范围内的中等效率,以及(iii)约0.002的低效率。每个观察到的侧链供体都表现出相似的量子效率分布,这支持了侧链氧化的分支途径模型,其中β-胡萝卜素是光氧化叶绿素(P680(+))的直接电子供体。观察到的侧链供体的产率定量地解释了光诱导Q(A)还原的宽中等效率范围,但不能解释表现出最高和最低效率的PSII部分。高效成分可能是由于酪氨酸(Z)氧化。在可见-近红外区域未表现出已识别吸收的供体主要负责最低效率成分。