首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Femtosecond photolysis of CO-ligated protoheme and hemoproteins: appearance of deoxy species with a 350-fsec time constant.
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Femtosecond photolysis of CO-ligated protoheme and hemoproteins: appearance of deoxy species with a 350-fsec time constant.

机译:飞秒光解CO连接的原血红素和血红蛋白:出现具有350 fsec时间常数的脱氧物质。

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摘要

Photolysis of HbCO, MbCO, and CO-protoheme has been investigated by measuring transient differential spectra and kinetics of induced absorption after excitation with a 250-fsec laser pulse at 307 nm. Probing was performed by a part of a continuum pulse between 395 and 445 nm. Photodissociation of the three liganded species occurred within the pulse duration. By contrast, the formation of deoxy species appeared with a mean (+/- SD) response time of 350 +/- 50 fsec. This time constant was identical for the three species and independent of the presence or absence of the protein structure. Our results suggest the formation of a transient high-spin in plane iron (II) species which relaxes in 350 fsec to a high-spin stable state with concerted kinetics of CO departure and iron displacement. The spin transition is suspected to occur via liganded excited states which relax in part to non-reactive states with a 3.2-psec time constant.
机译:HbCO,MbCO和CO原血红素的光解已经通过在307 nm处以250 fsec激光脉冲激发后测量瞬态差分光谱和诱导吸收的动力学进行了研究。通过395至445 nm之间的一部分连续脉冲进行探测。在脉冲持续时间内发生了三个配体的光解离。相比之下,脱氧物质的形成以350 +/- 50 fsec的平均(+/- SD)响应时间出现。这三个物种的时间常数是相同的,并且与蛋白质结构的存在与否无关。我们的结果表明,在平面铁(II)物种中形成了一个瞬态的高自旋态,该态在350 fsec内松弛到高自旋稳态,并伴随着CO离开和铁置换的协同动力学。怀疑自旋跃迁是通过配体激发态发生的,该配体激发态部分松弛到3.2 psec时间常数的非反应态。

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