首页> 外文期刊>Journal of cell biology >Structural localization of the O2-evolving apparatus to multimeric (tetrameric) particles on the lumenal surface of freeze-etched photosynthetic membranes.
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Structural localization of the O2-evolving apparatus to multimeric (tetrameric) particles on the lumenal surface of freeze-etched photosynthetic membranes.

机译:O2-进化装置对多聚体(四聚体)颗粒的结构定位在冷冻蚀刻光合膜的腔表面上的多聚体(四聚)颗粒。

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Isolated appressed chloroplast membranes, highly enriched in photosystem II (PSII) activity, were examined by freeze-etch electron microscopy. The exposed surfaces of these Triton X-100 solubilized membrane fragments correspond to the lumenal or ESs surface of intact stacked thylakoid membrane regions (Dunahay, T. G., L. A. Staehelin, M. Seibert, P. D. Ogilvie, and S. P. Berg. 1984. Biochim. Biophys. Acta. 764:179-193). The sequential removal from this sample of three extrinsic proteins (17, 23, and 33 kD) associated with the O2-evolving apparatus and the concomitant loss of O2 evolution, was related to subtle changes in the height and substructure of characteristic multimeric (often tetrameric) particles that protrude from the ESs membrane surface. After removal of these proteins, the multimeric particles disappeared and dimeric particles of similar diameter but of lesser height (6.1 vs. 8.2 nm in the controls) were observed. Reconstitution of the depleted membrane fragments with the extrinsic proteins led to rebinding of the three proteins, to a 63% recovery of the control rates of O2 evolution, and to the reappearance of the larger multimeric particles. Analysis of the structural changes associated with the loss and rebinding of the extrinsic proteins is consistent with a stoichiometry of one PSII complex for either one or two copies of the 17-, 23-, and 33-kD proteins, and these are symmetrically arranged on the lumenal surface of the complex. These results demonstrate that the multimeric ESs particles correspond to part of the intact O2-evolving apparatus of PSII, thus confirming previous indirect studies relating these particles to PSII. The dimeric particles probably contain the rest of the O2-evolving complex.
机译:通过冻蚀刻电子显微镜检查热量浓缩的氯化体膜,高度富集的氯化物膜,高度富集在光照II(PSII)活性中。这些Triton X-100溶解的膜片段的暴露表面对应于完整堆叠的类吡吡膜膜区的内腔或ESS表面(Dunahay,Tg,La Staehelin,M.Seibert,Pd Ogilvie和Sp Berg。1984。Biochim。Biophym。 Acta。764:179-193)。与该样品的三种外在蛋白质(17,23和33kd)的顺序除去与O2演化装置相关的和伴随的O2进化丧失,与特性多聚体的高度和亚结构的微妙变化有关(通常是四聚体)从ES膜表面突出的颗粒。除去这些蛋白质后,观察到多聚体颗粒消失,并且相似的二聚体颗粒,但在对照中较小的高度(6.1 vs.8.2nm)。用外部蛋白质重构耗尽膜片段导致三种蛋白质的重新旋转,对O2进化的控制率的63%回收率,并重新填充较大的多聚体颗粒。分析与外部蛋白质的损失和抗弯相关的结构变化与17-,23-和33-kd蛋白的一个或两个拷贝的一个psii复合物的化学计量相一致,并且这些是对称的布置络合物的腔表面。这些结果表明,多聚体ES颗粒对应于PSII的完整O2演化装置的一部分,从而证实了将这些颗粒与PSII相关的前一个间接研究。二聚体颗粒可能包含其余的O2演化复合物。

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