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在闪光激发后的微秒和纳秒时间范围内,菠菜叶绿体和小球藻细胞中光系统II氧化态初级电子供体的还原动力学。

Kinetics of reduction of the oxidized primary electron donor of photosystem II in spinach chloroplasts and in Chlorella cells in the microsecond and nanosecond time ranges following flash excitation.

作者信息

van Best J A, Mathis P

出版信息

Biochim Biophys Acta. 1978 Jul 6;503(1):178-88. doi: 10.1016/0005-2728(78)90170-6.

Abstract

Absorption changes (deltaA) at 820 nm, following laser flash excitation of spinach chloroplasts and Chlorella cells, were studied in order to obtain information on the reduction time of the photooxidized primary donor of Photosystem II at physiological temperatures. In the microsecond time range the difference spectrum of deltaA between 750 and 900 nm represents a peak at 820 nm, attributable to a radical-cation of chlorophyll a. In untreated dark-adapted material the signal can be attributed solely to P+-700; it decays in a polyphasic manner with half-times of 17 microseconds, 210 microseconds and over 1 ms. The oxidized primary donor of Photosystem II (P+II) is not detected with a time resolution of 3 microseconds. After treatment with 3--10 mM hydroxylamine, which inhibits the donor side of Photosystem II, P+II is observed and decays biphasically (a major phase with t1/2=20--40 microseconds, and a minor phase with t1/2 congruent to 200 microseconds), probably by reduction by an accessory electron donor. In the nanosecond range, which was made accessible by a new fast-response flash photometer operating at 820 nm, it was found the P+II is reduced with a half-time of 25--45 ns in untreated dark-adapted chloroplasts. It is assumed that the normal secondary electron donor is responsible for this fast reduction.

摘要

为了获取有关生理温度下光系统II光氧化初级供体还原时间的信息,研究了菠菜叶绿体和小球藻细胞在激光闪光激发后820nm处的吸收变化(ΔA)。在微秒时间范围内,750至900nm之间的ΔA差光谱在820nm处呈现一个峰值,这归因于叶绿素a的自由基阳离子。在未处理的暗适应材料中,该信号仅可归因于P + -700;它以多相方式衰减,半衰期分别为17微秒、210微秒和超过1毫秒。光系统II的氧化初级供体(P + II)在3微秒的时间分辨率下未被检测到。在用3 - 10mM羟胺处理后,羟胺抑制光系统II的供体侧,观察到P + II并双相衰减(一个主要相t1/2 = 20 - 40微秒,一个次要相t1/2约为200微秒),可能是由一个辅助电子供体还原。在纳秒范围内,通过一台在820nm工作的新型快速响应闪光光度计得以实现,发现在未处理的暗适应叶绿体中P + II以25 - 45纳秒的半衰期被还原。据推测,正常的次级电子供体负责这种快速还原。

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