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Effects of Optically Active 1-(α-Methylbenzyl)-3-(34-dichlorophenyl)urea on Reactions of Mitochondria and Chloroplasts

机译:旋光性1-(α-甲基苄基)-3-(34-二氯苯基)脲对线粒体与叶绿体反应的影响

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摘要

Effects of the R- and S-isomers and racemate of 1-(α-methylbenzyl)-3-(3,4-dichlorophenyl)urea (MBPU) were measured on phosphorylation and electron transport in mung bean (Phaseolus aureus L.) mitochondria and spinach (Spinacia oleracea L.) chloroplasts.In chloroplasts, S-MBPU inhibited basal and methylamine-uncoupled electron transport with ferricyanide as the oxidant, both photoreduction and coupled photophosphorylation with water as the electron donor and with ferricyanide and nicotinamide adenine dinucleotide phosphate (NADP) as oxidants, and cyclic photophosphorylation with phenazine methosulfate as the electron mediator under an argon gas phase. With ascorbate 2,6-dichloro-phenolindophenol as the electron donor, phosphorylation coupled to NADP reduction was inhibited, but the reduction of NADP was not inhibited. The R-isomer of MBPU, like the S-isomer, inhibited all of the photophosphorylation reactions studied. However, unlike the S-isomer, the R-isomer either did not inhibit or was a very weak inhibitor of all photoreduction reactions. The effects of the MBPUs on the chloroplast reactions can be explained by action at two different sites: an optically specific site near photosystem II and the oxygen evolution pathway, and a second optically nonspecific site associated with the generation of ATP.In mitochondria, both the R- and S-isomers stimulated state 4 respiration, inhibited state 3 respiration, and released oligomycin-inhibited respiration with malate, succinate, and NADH as substrates. Both enantiomers were equally active in all studies with malate and succinate as substrates. However, with NADH as substrate, R-MBPU was a stronger inhibitor of state 3 respiration and a weaker stimulator of state 4 respiration than S-MBPU.
机译:测量了1-(α-甲基苄基)-3-(3,4-二氯苯基)脲(MBPU)的R和S异构体以及外消旋体对绿豆(Phaseolus aureus L.)线粒体中磷酸化和电子传递的影响在叶绿体中,S-MBPU以三价铁氰化物为氧化剂,以水为电子供体,并以三价铁氰化物和烟酰胺腺嘌呤二核苷酸磷酸(SNP)抑制基础和甲胺解偶联的电子传输,同时进行光还原和光磷酸化。 NADP)作为氧化剂,并在氩气气相下用吩嗪硫酸甲酯作为电子介体进行环状光磷酸化。用抗坏血酸2,6-二氯苯酚吲哚酚作为电子供体,磷酸化与NADP还原偶联被抑制,但是NADP的还原没有被抑制。 MBPU的R异构体像S异构体一样,抑制了所有研究的光磷酸化反应。但是,与S-异构体不同,R-异构体不抑制所有光还原反应,或者是非常弱的所有光还原反应的抑制剂。 MBPU对叶绿体反应的影响可以通过在两个不同的位点上的作用来解释:在光系统II附近的一个光学特异性位点和氧气释放途径,以及与ATP产生相关的第二个光学非特异性位点。 R和S异构体以苹果酸,琥珀酸和NADH为底物刺激状态4的呼吸,抑制状态3的呼吸,并释放低聚霉素抑制的呼吸。在以苹果酸和琥珀酸酯为底物的所有研究中,两种对映体均具有相同的活性。但是,以NADH为底物,与S-MBPU相比,R-MBPU是状态3呼吸的更强抑制剂,而状态4呼吸的刺激较弱。

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