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首页> 外文期刊>Journal of Biological Physics >On the Configurational and Conformational Changes in Photoactive Yellow Protein that Leads to Signal Generation in Ectothiorhodospira halophila
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On the Configurational and Conformational Changes in Photoactive Yellow Protein that Leads to Signal Generation in Ectothiorhodospira halophila

机译:关于光活化黄色蛋白的构型和构象变化,导致嗜盐拟青霉嗜盐菌产生信号

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Photoactive Yellow Protein (PYP), a phototaxis photoreceptor from Ectothiorhodospira halophila, is a small water-soluble protein that iscrystallisable and excellently photo-stable. It can be activated with light(λmax= 446 nm), to enter a series of transientintermediates that jointly form the photocycle of this photosensor protein.The most stable of these transient states is the signalling state forphototaxis, pB.The spatial structure of the ground state of PYP, pG and the spectralproperties of the photocycle intermediates have been very well resolved.Owing to its excellent chemical- and photochemical stability, also the spatialstructure of its photocycle intermediates has been characterised with X-raydiffraction and multinuclear NMR spectroscopy. Surprisingly, the resultsobtained showed that their structure is dependent on the molecular contextin which they are formed. Therefore, a large range of diffraction-,scattering- and spectroscopic techniques is now being employed to resolvein detail the dynamical changes of the structure of PYP while it progressesthrough its photocycle. This approach has led to considerable progress,although some techniques still result in mutually inconsistent conclusionsregarding aspects of the structure of particular intermediates.Recently, significant progress has also been made with simulations withmolecular dynamics analyses of the initial events that occur in PYP uponphoto activation. The great challenge in this field is to eventually obtainagreement between predicted dynamical alterations in PYP structure, asobtained with the MD approach and the actually measured dynamicalchanges in its structure as evolving during photocycle progression.
机译:光敏性黄色蛋白(PYP)是一种来自嗜盐拟青霉嗜盐菌的趋光性光感受器,它是一种小的水溶性蛋白,可结晶且具有很好的光稳定性。它可以用光(λmax = 446 nm)激活,进入一系列瞬态中间体,这些瞬态中间体共同形成该光电传感器蛋白的光循环。这些瞬态中最稳定的是趋光性的信号状态pB。 PYP,pG的基态结构和光循环中间体的光谱性质已得到很好的解析。由于其出色的化学和光化学稳定性,还通过X射线衍射和多核NMR表征了其光循环中间体的空间结构。令人惊讶地,获得的结果表明它们的结构取决于它们形成的分子环境。因此,现在正采用大范围的衍射,散射和光谱技术来详细解析PYP在其光循环过程中的动态变化。尽管某些技术仍未就特定中间体的结构方面得出相互矛盾的结论,但这种方法已取得了可观的进展。最近,通过分子动力学分析对PYP活化后发生的初始事件进行了分子动力学分析,也取得了重大进展。在该领域中的巨大挑战是最终获得通过MD方法获得的PYP结构的预测动态变化与在光循环过程中随着结构的实际测量动态变化之间的一致性。

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