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海藻糖可保护缺锰的光系统2制剂免受供体侧光抑制。

Trehalose protects Mn-depleted photosystem 2 preparations against the donor-side photoinhibition.

作者信息

Yanykin D V, Khorobrykh A A, Mamedov M D, Klimov V V

机构信息

Institute of Basic Biological Problems, Russian Academy of Sciences, Pushchino 142290, Moscow Region, Russia.

Institute of Basic Biological Problems, Russian Academy of Sciences, Pushchino 142290, Moscow Region, Russia.

出版信息

J Photochem Photobiol B. 2016 Nov;164:236-243. doi: 10.1016/j.jphotobiol.2016.09.027. Epub 2016 Sep 27.

Abstract

Recently, it has been shown that the addition of 1M trehalose leads to the increase of the rate of oxygen photoconsumption associated with activation of electron transport in the reaction center of photosystem 2 (PS2) in Mn-depleted PS2 membranes (apo-WOC-PS2) [37]. In the present work the effect of trehalose on photoinhibition of apo-WOC-PS2 preparations (which are characterized by a high sensitivity to the donor side photoinhibition of PS2) was investigated. The degree of photoinhibition was estimated by the loss of the capability of exogenous electron donor (sodium ascorbate) to reactivate the electron transport (measured by light-induced changes of chlorophyll fluorescence yield (∆F)) in apo-WOC-PS2. It was found that 1M trehalose enhanced the Mn-dependent suppression of photoinhibition of apo-WOC-PS2: in the presence of trehalose the addition of 0.2μM Mn (corresponding to 2 Mn per one reaction center) was sufficient for an almost complete suppression of the donor side photoinhibition of the complex. In the absence of trehalose it was necessary to add 100μM Mn to achieve a similar result. The effect of trehalose was observed during photoinhibition of apo-WOC-PS2 at low (15μmolphotonsm) and high (200μmolphotonsm) light intensity. When Mn was replaced by other PS2 electron donors (ferrocyanide, DPC) as well as by Ca the protective effect of trehalose was not observed. It was also found that 1M trehalose decreased photoinhibition of apo-WOC-PS2 if the samples contained endogenous manganese (1-2 Mn ions per one RC was enough for the maximum protection effect). It is concluded that structural changes in PS2 caused by the addition of trehalose enhance the capability of photochemical reaction centers of apo-WOC-PS2 to accept electrons from manganese (both exogenous and endogenous), which in turn leads to a considerable suppression of the donor side photoinhibition of PS2.

摘要

最近的研究表明,在缺锰的光系统2(PS2)膜(脱辅基水氧化复合物-PS2,apo-WOC-PS2)中添加1M海藻糖会导致与光系统2反应中心电子传递激活相关的氧光消耗速率增加[37]。在本研究中,研究了海藻糖对apo-WOC-PS2制剂光抑制的影响(该制剂对PS2供体侧光抑制具有高敏感性)。通过外源性电子供体(抗坏血酸钠)重新激活电子传递的能力丧失来估计光抑制程度(通过apo-WOC-PS2中叶绿素荧光产量的光诱导变化(∆F)来测量)。结果发现,1M海藻糖增强了apo-WOC-PS2光抑制的锰依赖性抑制作用:在有海藻糖存在的情况下,添加0.2μM锰(相当于每个反应中心2个锰)足以几乎完全抑制该复合物的供体侧光抑制。在没有海藻糖的情况下,需要添加100μM锰才能达到类似的结果。在低(15μmol光子/m²)和高(200μmol光子/m²)光强下对apo-WOC-PS2进行光抑制时均观察到了海藻糖的作用。当用其他PS2电子供体(亚铁氰化物、二苯基碳酰二肼)以及钙替代锰时,未观察到海藻糖的保护作用。还发现,如果样品含有内源性锰(每个反应中心1-2个锰离子足以产生最大保护作用),1M海藻糖会降低apo-WOC-PS2的光抑制。得出的结论是,添加海藻糖引起的PS2结构变化增强了apo-WOC-PS2光化学反应中心从锰(外源性和内源性)接受电子的能力,这反过来导致PS2供体侧光抑制的显著抑制。

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