Tiwari Arjun, Jajoo Anjana, Bharti Sudhakar
School of Life Sciences, Life Science Annex Building, Devi Ahilya University, Indore, (M.P.), India.
J Bioenerg Biomembr. 2008 Jun;40(3):237-43. doi: 10.1007/s10863-007-9099-5. Epub 2007 Sep 19.
The present study for the first time describes a close relationship between a change in the states of Cyt b559, a damage to Mn complex and a rapid reduction of tyrosine D (Y(D)) as a function of temperature in spinach thylakoid membranes. Measurements of the EPR signal of dark stable tyrosine D in heat-treated thylakoid membranes showed a gradual decay of the oxidized state of tyrosine D with the progression of temperature. Simultaneously, it leads to the conversion of high-potential Cytochrome b559 into its low-potential form. We have speculated a possible involvement of Cytochrome b559 in the primary reduction events of tyrosine D in dark at high temperature. However, rapid reduction of tyrosine D may also be due to the disassembly of the Mn clock, which causes exposure of Y(D) to the lumen and thereby its reduction by some unknown factor. These conclusions are supported by the measurements of Mn(2+) release and thermoluminescence curves of various charge pairs in heat-treated thylakoid membranes. The results reveal an important aspect on the role of Cyt b559 in PS II during temperature stress.
本研究首次描述了菠菜类囊体膜中细胞色素b559状态的变化、锰复合物的损伤与酪氨酸D(Y(D))随温度快速还原之间的密切关系。对热处理类囊体膜中暗稳定酪氨酸D的电子顺磁共振信号测量表明,随着温度升高,酪氨酸D的氧化态逐渐衰减。同时,它导致高电位细胞色素b559转化为低电位形式。我们推测细胞色素b559可能参与高温黑暗条件下酪氨酸D的初级还原事件。然而,酪氨酸D的快速还原也可能是由于锰时钟的解体,这导致Y(D)暴露于内腔,从而被一些未知因素还原。热处理类囊体膜中Mn(2+)释放和各种电荷对的热发光曲线测量结果支持了这些结论。结果揭示了温度胁迫期间细胞色素b559在光系统II中作用的一个重要方面。