Rhee K H
Laboratory of Molecular Biology, Medical Research Council, Hills Road, Cambridge, CB2 2QH, United Kingdom.
Annu Rev Biophys Biomol Struct. 2001;30:307-28. doi: 10.1146/annurev.biophys.30.1.307.
Understanding the precise role of photosystem II as an element of oxygenic photosynthesis requires knowledge of the molecular structure of this membrane protein complex. The past few years have been particularly exciting because the structural era of the plant photosystem II has begun. Although the atomic structure has yet to be determined, the map obtained at 6 A resolution by electron crystallography allows assignment of the key reaction center subunits with their associated pigment molecules. In the following, we first review the structural details that have recently emerged and then discuss the primary and secondary photochemical reaction pathways. Finally, in an attempt to establish the evolutionary link between the oxygenic and the anoxygenic photosynthesis, a framework structure common to all photosynthetic reaction centers has been defined, and the implications have been described.
要了解光系统II作为产氧光合作用元件的确切作用,需要了解这种膜蛋白复合物的分子结构。过去几年尤其令人兴奋,因为植物光系统II的结构研究时代已经开启。尽管尚未确定其原子结构,但通过电子晶体学获得的6埃分辨率图谱能够确定关键反应中心亚基及其相关色素分子。以下,我们首先回顾最近出现的结构细节,然后讨论初级和次级光化学反应途径。最后,为了建立产氧光合作用和不产氧光合作用之间的进化联系,定义了所有光合反应中心共有的框架结构,并描述了其意义。