Kuhn M G, Vermaas W F
Department of Botany, Arizona State University, Tempe 85287-1601.
Plant Mol Biol. 1993 Oct;23(1):123-33. doi: 10.1007/BF00021425.
In order to investigate the role and function of the hydrophilic region between transmembrane regions V and CI in the photosystem II core antenna protein CP43, we introduced eight different deletions in psbC of Synechocystis sp; PCC 6803 resulting in a loss of 7-11 codons in evolutionary conserved domains in this region. All deletions resulted in an obligate photoheterotrophic phenotype (requirement of glucose for cell growth) and the absence of any detectable oxygen evolution activity. The various deletion mutations showed a different impact on the amount of CP43 in the thylakoid, ranging from wild-type levels of (a now slightly smaller) CP43 to no detectable CP43 at all. All deletions led to a decrease in the amount of the D1 and D2 proteins in the thylakoids with a larger effect on D2 than on D1. CP47, the other major chlorophyll-binding protein, was present in reduced but significant amounts in the thylakoid. Herbicide binding (diuron) was lost in all but one mutant indicating the PSII components are not assembled into functionally intact complexes. Fluorescence-emission spectra confirmed this notion. This indicates that the large hydrophilic loop of CP43 plays an important role in photosystem II, and even though a shortened CP43 is present in thylakoids of most mutants, functional characteristics resembled that of a mutant with interrupted psbC.
为了研究光系统II核心天线蛋白CP43中跨膜区V和CI之间亲水区的作用和功能,我们在集胞藻属PCC 6803的psbC基因中引入了8种不同的缺失,导致该区域进化保守结构域中7至11个密码子缺失。所有缺失均导致专性光异养表型(细胞生长需要葡萄糖)且无任何可检测到的放氧活性。各种缺失突变对类囊体中CP43的含量有不同影响,从野生型水平(现在稍小的)CP43到完全检测不到CP43。所有缺失均导致类囊体中D1和D2蛋白的含量减少,对D2的影响比对D1的影响更大。另一种主要的叶绿素结合蛋白CP47在类囊体中的含量减少但仍显著。除一个突变体之外,所有突变体均丧失除草剂结合能力(敌草隆),这表明PSII组件未组装成功能完整的复合物。荧光发射光谱证实了这一观点。这表明CP43的大亲水环在光系统II中起重要作用,并且尽管大多数突变体的类囊体中存在缩短的CP43,但其功能特征类似于psbC中断的突变体。