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Absence of the major light-harvesting antenna proteins alters the redox properties of photosystem II reaction centres in the chlorina F2 mutant of barley.

机译:缺少主要的光收集天线蛋白会改变大麦叶绿素F2突变体中光系统II反应中心的氧化还原特性。

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摘要

Although the chlorina F2 mutant of barley specifically exhibits reduced levels of the major light-harvesting polypeptides associated with photosystem II (PSII), thermoluminescence measurements of photosystem reaction centre photochemistry revealed that S2/S3QB- charge recombinations were shifted to lower temperatures, while the characteristic peak of S2QA- charge recombinations was shifted to higher temperatures compared with wild-type (WT) barley. Thus, we show that the absence of the major light-harvesting polypeptides affects the redox properties of PSII reaction centres. Radiolabeling studies in vivo and in vitro with [32P]orthophosphate or [gamma-32P]ATP, respectively, demonstrated that the D1 PSII reaction centre polypeptide is phosphorylated in both the WT and the F2 mutant. In contrast with the radiolabeling results, phosphorylation of D1 and other PSII proteins, although detected in WT barley, was ambiguous in the F2 mutant when the phosphothreonine antibody method of detection was used. Thus, caution must be exercised in the use of commercially available phosphothreonine antibodies to estimate thylakoid polypeptide phosphorylation. Furthermore, in membrano, the D1 polypeptide of the F2 mutant was less susceptible to trypsin treatment than that of WT barley. The role of the light-harvesting complex in modulating the structure and function of the D1 polypeptide of PSII reaction centers is discussed.
机译:尽管大麦的叶绿素F2突变体特别显示出与光系统II(PSII)相关的主要集光多肽的水平降低,但是光系统反应中心光化学的热致发光测量显示S2 / S3QB-电荷重组转移到了较低的温度,而该特性与野生型(WT)大麦相比,S2QA电荷重组的峰值移至更高的温度。因此,我们表明主要的光采多肽的缺乏影响PSII反应中心的氧化还原特性。分别在体内和体外分别用[32P]正磷酸盐或[γ-32P] ATP进行的放射性标记研究表明,D1 PSII反应中心多肽在WT和F2突变体中均被磷酸化。与放射性标记结果相反,尽管在WT大麦中检测到了D1和其他PSII蛋白的磷酸化,但是当使用磷酸苏氨酸抗体检测方法时,F2突变体中的D1和其他PSII蛋白却是模棱两可的。因此,在使用可商购的磷酸苏氨酸抗体来估计类囊体多肽的磷酸化时必须谨慎。此外,在膜中,与野生大麦相比,F2突变体的D1多肽对胰蛋白酶的敏感性较低。讨论了光捕获复合物在调节PSII反应中心D1多肽的结构和功能中的作用。

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