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一种细菌光调节腺苷酸环化酶的光激活机制。

Photoactivation Mechanism of a Bacterial Light-Regulated Adenylyl Cyclase.

作者信息

Lindner Robert, Hartmann Elisabeth, Tarnawski Miroslaw, Winkler Andreas, Frey Daniel, Reinstein Jochen, Meinhart Anton, Schlichting Ilme

机构信息

Max Planck Institute for Medical Research, Jahnstr, 29, 69120 Heidelberg, Germany.

Max Planck Institute for Medical Research, Jahnstr, 29, 69120 Heidelberg, Germany.

出版信息

J Mol Biol. 2017 May 5;429(9):1336-1351. doi: 10.1016/j.jmb.2017.03.020. Epub 2017 Mar 21.

Abstract

Light-regulated enzymes enable organisms to quickly respond to changing light conditions. We characterize a photoactivatable adenylyl cyclase (AC) from Beggiatoa sp. (bPAC) that translates a blue light signal into the production of the second messenger cyclic AMP. bPAC contains a BLUF photoreceptor domain that senses blue light using a flavin chromophore, linked to an AC domain. We present a dark state crystal structure of bPAC that closely resembles the recently published structure of the homologous OaPAC from Oscillatoria acuminata. To elucidate the structural mechanism of light-dependent AC activation by the BLUF domain, we determined the crystal structures of illuminated bPAC and of a pseudo-lit state variant. We use hydrogen-deuterium exchange measurements of secondary structure dynamics and hypothesis-driven point mutations to trace the activation pathway from the chromophore in the BLUF domain to the active site of the cyclase. The structural changes are relayed from the residues interacting with the excited chromophore through a conserved kink of the BLUF β-sheet to a tongue-like extrusion of the AC domain that regulates active site opening and repositions catalytic residues. Our findings not only show the specific molecular pathway of photoactivation in BLUF-regulated ACs but also have implications for the general understanding of signaling in BLUF domains and of the activation of ACs.

摘要

光调节酶使生物体能够快速响应不断变化的光照条件。我们对来自贝氏硫菌属(Beggiatoa sp.)的一种光激活腺苷酸环化酶(AC)(bPAC)进行了表征,它能将蓝光信号转化为第二信使环磷酸腺苷(cAMP)的产生。bPAC包含一个蓝光感应黄素蛋白(BLUF)光感受器结构域,该结构域利用黄素发色团感知蓝光,并与一个AC结构域相连。我们展示了bPAC的黑暗状态晶体结构,它与最近发表的尖头颤藻(Oscillatoria acuminata)同源OaPAC的结构非常相似。为了阐明BLUF结构域对光依赖性AC激活的结构机制,我们确定了光照下bPAC和一种假光照状态变体的晶体结构。我们利用二级结构动力学的氢氘交换测量和基于假设的点突变来追踪从BLUF结构域中的发色团到环化酶活性位点的激活途径。结构变化从与激发态发色团相互作用的残基通过BLUFβ折叠的保守扭结传递到AC结构域的舌状突出,从而调节活性位点的开放并重新定位催化残基。我们的发现不仅揭示了BLUF调节的ACs中光激活的特定分子途径,也对BLUF结构域信号传导和ACs激活的一般理解具有启示意义。

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