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Identification and Partial Characterization of the Denaturation Transition of the Photosystem II Reaction Center of Spinach Chloroplast Membranes

机译:菠菜叶绿体膜光系统II反应中心变性转变的鉴定与部分表征

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摘要

Sensitive differential scanning calorimetry was employed to investigate thylakoid membrane structure. Calorimetric scans of chloroplast membranes suspended in a low ionic strength Hepesbuffered medium revealed endothermic transitions centered at the following temperatures (°C): A (42.5), B (60.6), C1 (64.9), C2 (69.6), D (75.8), E (84.3), and F (88.9). The B transition was demonstrated by several different methods to originate from denaturation of the photosystem II reaction center complex. Evidence for this conclusion is as follows: (a) the isolated reaction center complex denatures near the temperature of the B transition; (b) inorganic phosphate destablizes the isolated reaction center complex and the B endotherm to a similar extent; (c) heat inactivation of the photosystem II-mediated 1,5-diphenylcarbazide → dichloroindophenol photoreaction occurs at the temperature of the B transition and is influenced in a manner similar to B by the presence of phosphate; (d) thermal gel analysis indicates that the 43 and 47 kilodalton polypeptides of the photosystem reaction center complex denature at the temperature of the B transition, both in the presence and absence of phosphate; (e) low temperature (77 Kelvin) fluorescence reveals that a change in photosystem II emission at 695 nanometers occurs during the B transition; and (f) ioxynil, a specific inhibitor of photosystem II, selectively stabilizes the B endotherm. With the identification of the B transition established, the origins of six of the eight major transitions of the chloroplast membrane have now been determined.
机译:采用灵敏差示扫描量热法研究类囊体膜的结构。悬浮在低离子强度Hepesbuffered介质中的叶绿体膜的量热扫描显示吸热转变集中在以下温度(°C)上:A(42.5),B(60.6),C1(64.9),C2(69.6),D(75.8) ,E(84.3)和F(88.9)。通过几种不同的方法证明了B跃迁源自光系统II反应中心络合物的变性。该结论的证据如下:(a)分离的反应中心络合物在B转变温度附近变性。 (b)无机磷酸盐使分离出的反应中心络合物和B吸热达到相似的程度; (c)在B转变温度下发生光系统II介导的1,5-二苯卡巴肼→二氯吲哚酚光反应的热失活,其受磷酸盐的影响与B相似。 (d)热凝胶分析表明,在存在和不存在磷酸盐的情况下,光系统反应中心复合物的43和47道尔顿多肽在B转变温度下均变性。 (e)低温(77开尔文)荧光表明在B跃迁期间695纳米处的光系统II发射发生了变化; (f)ioxynil,光系统II的特异性抑制剂,可选择性地稳定B的吸热。通过确定B过渡,现在已经确定了叶绿体膜的八个主要过渡中的六个的起源。

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