Thompson L K, Brudvig G W
Department of Chemistry, Yale University, New Haven, Connecticut 06511.
Biochemistry. 1988 Sep 6;27(18):6653-8. doi: 10.1021/bi00418a002.
Although cytochrome b-559 is an integral component of the photosystem II complex (PSII), its function is unknown. Because cytochrome b-559 has been shown to be both photooxidized and photoreduced in PSII, one of several proposals is that it mediates cyclic electron transfer around PSII, possibly as a protective mechanism. We have used electron paramagnetic resonance spectroscopy to investigate the pathway of photooxidation of cytochrome b-559 in PSII and have shown that it proceeds via photooxidation of chlorophyll. We propose that this photooxidation of chlorophyll is the first step in the photoinhibition of PSII. The unique susceptibility of PSII to photoinhibition is probably due to the fact that it is the only reaction center in photosynthesis which generates an oxidant with a reduction potential high enough to oxidize chlorophyll. We propose that the function of cytochrome b-559 is to mediate cyclic electron transfer to rereduce photooxidized chlorophyll and protect PSII from photoinhibition. We also suggest that the chlorophyll(s) which are susceptible to photooxidation are analogous to the monomer chlorophylls found in the bacterial photosynthetic reaction center complex.
尽管细胞色素b - 559是光系统II复合物(PSII)的一个组成部分,但其功能尚不清楚。由于细胞色素b - 559在PSII中已被证明既可以被光氧化也可以被光还原,所以有几种推测之一是它介导围绕PSII的循环电子传递,这可能是一种保护机制。我们利用电子顺磁共振光谱研究了PSII中细胞色素b - 559的光氧化途径,并表明它是通过叶绿素的光氧化进行的。我们提出叶绿素的这种光氧化是PSII光抑制的第一步。PSII对光抑制的独特敏感性可能是由于它是光合作用中唯一产生还原电位高到足以氧化叶绿素的氧化剂的反应中心。我们提出细胞色素b - 559的功能是介导循环电子传递以再还原光氧化的叶绿素,并保护PSII免受光抑制。我们还认为易受光氧化的叶绿素类似于细菌光合反应中心复合物中发现的单体叶绿素。