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Photosystem II Peripheral Accessory Chlorophyll Mutants in Chlamydomonas reinhardtii. Biochemical Characterization and Sensitivity to Photo-Inhibition

机译:莱茵衣藻中的光系统II外围附件叶绿素突变体。生化特征和对光抑制的敏感性

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摘要

In addition to the four chlorophylls (Chls) involved in primary charge separation, the photosystem II (PSII) reaction center polypeptides, D1 and D2, coordinate a pair of symmetry-related, peripheral accessory Chls. These Chls are axially coordinated by the D1-H118 and D2-H117 residues and are in close association with the proximal Chl antennae proteins, CP43 and CP47. To gain insight into the function(s) of each of the peripheral Chls, we generated site-specific mutations of the amino acid residues that coordinate these Chls and characterized their energy and electron transfer properties. Our results demonstrate that D1-H118 and D2-H117 mutants differ with respect to: (a) their relative numbers of functional PSII complexes, (b) their relative ability to stabilize charge-separated states, (c) light-harvesting efficiency, and (d) their sensitivity to photo-inhibition. The D2-H117N and D2-H117Q mutants had reduced levels of functional PSII complexes and oxygen evolution capacity as well as reduced light-harvesting efficiencies relative to wild-type cells. In contrast, the D1-H118Q mutant was capable of near wild-type rates of oxygen evolution at saturating light intensities. The D1-H118Q mutant also was substantially more resistant to photo-inhibition than wild type. This reduced sensitivity to photo-inhibition is presumably associated with a reduced light-harvesting efficiency in this mutant. Finally, it is noted that the PSII peripheral accessory Chls have similarities to a to a pair of Chls also present in the PSI reaction center complex.
机译:除了涉及初级电荷分离的四个叶绿素(Chls)外,光系统II(PSII)反应中心多肽D1和D2还与一对对称相关的外围辅助Chls协调。这些Chl通过D1-H118和D2-H117残基轴向配位,并与近端Chl触角蛋白CP43和CP47密切相关。为了深入了解每个外围Chls的功能,我们生成了氨基酸残基的位点特异性突变,这些突变可协调这些Chls并表征其能量和电子转移特性。我们的结果表明D1-H118和D2-H117突变体在以下方面有所不同:(a)它们的功能PSII复合物的相对数量,(b)它们稳定电荷分离态的相对能力,(c)光收集效率,和(d)它们对光抑制的敏感性。相对于野生型细胞,D2-H117N和D2-H117Q突变体具有降低的功能PSII复合物水平和氧气释放能力以及降低的光捕获效率。相反,D1-H118Q突变体在饱和光强度下能够以接近野生型的速率释放氧气。 D1-H118Q突变体也比野生型具有更强的抗光抑制能力。这种对光抑制的敏感性降低可能与该突变体的光捕获效率降低有关。最后,注意到PSII外围附件Chls与PSI反应中心复合物中也存在的一对Chls具有相似性。

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