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利用表面等离子体共振技术探测光敏色素A(Pr与Pfr)与单克隆抗体的差异相互作用。

Differential interactions of phytochrome A (Pr vs. Pfr) with monoclonal antibodies probed by a surface plasmon resonance technique.

作者信息

Natori Chihoko, Kim Jeong-Il, Bhoo Seong Hee, Han Yun-Jeong, Hanzawa Hiroko, Furuya Masaki, Song Pill-Soon

机构信息

Hitachi Advanced Research Laboratory, Hatoyama, Saitama 350-0395, Japan.

出版信息

Photochem Photobiol Sci. 2007 Jan;6(1):83-9. doi: 10.1039/b611077k. Epub 2006 Dec 8.

Abstract

Phytochromes are red- and far-red light-reversible photoreceptors for photomorphogenesis in plants. Phytochrome A is a dimeric chromopeptide that mediates very low fluence and high irradiance responses. To analyze the surface properties of phytochrome A (phyA), the epitopes of 21 anti-phyA monoclonal antibodies were determined by variously engineered recombinant phyA proteins and the dissociation constants of seven anti-phyA monoclonal antibodies with phyA were measured using a surface plasmon resonance (SPR)-based resonant mirror biosensor (IAsys). Purified oat phyA was immobilized on the sensor surface using a carboxymethyl dextran cuvette in advance, and the interactions of each chosen monoclonal antibody against phyA in either red light absorbing form (Pr) or far-red light absorbing form (Pfr) at different concentrations were monitored. The binding profiles were analyzed using the FAST Fit program of IAsys. The resultant values of dissociation constants clearly demonstrated the differential affinities between the phyA epitopes and the monoclonal antibodies dependent upon Pr vs. Pfr conformations. Monoclonal antibody mAP20 preferentially recognized the epitope at amino acids 653-731 in the Pr form, whereas mAA02, mAP21 and mAR07/mAR08 displayed preferential affinities for the Pfr's surfaces at epitopes 494-601 (the hinge region between the N- and C-terminal domains), 601-653 (hinge in PASI domain), and 772-1128 (C-terminal domain), respectively. The N-terminal extension (1-74) was not recognized by mAP09 and mAP15, suggesting that the N-terminal extreme is not exposed in the native conformation of phyA. On the other hand, the C-terminal domain becomes apparently exposed on Pr-to-Pfr phototransformation, suggesting an inter-domain cross-talk. The use of surface plasmon resonance spectroscopy offers a new approach to study the surface properties of phytochromes associated with the photoreversible structural changes, as well as for the study of protein-protein interactions of phytochromes with their interacting proteins involved in light signaling events in plants.

摘要

光敏色素是植物中用于光形态建成的红光和远红光可逆光感受器。光敏色素A是一种二聚体色素肽,介导极低光通量和高辐照度反应。为了分析光敏色素A(phyA)的表面特性,通过各种工程重组phyA蛋白确定了21种抗phyA单克隆抗体的表位,并使用基于表面等离子体共振(SPR)的共振镜生物传感器(IAsys)测量了7种抗phyA单克隆抗体与phyA的解离常数。预先使用羧甲基葡聚糖比色皿将纯化的燕麦phyA固定在传感器表面,并监测每种选定的抗phyA单克隆抗体在不同浓度下与红光吸收形式(Pr)或远红光吸收形式(Pfr)的phyA的相互作用。使用IAsys的FAST Fit程序分析结合曲线。解离常数的结果值清楚地表明了phyA表位与单克隆抗体之间取决于Pr与Pfr构象的差异亲和力。单克隆抗体mAP20优先识别Pr形式中氨基酸653 - 731处的表位,而mAA02、mAP21和mAR07/mAR08分别在表位494 - 601(N端和C端结构域之间的铰链区)、601 - 653(PASI结构域中的铰链)和772 - 1128(C端结构域)对Pfr表面表现出优先亲和力。N端延伸(1 - 74)未被mAP09和mAP15识别,表明N端极端在phyA的天然构象中未暴露。另一方面,C端结构域在Pr到Pfr的光转化过程中明显暴露出来,表明存在结构域间的相互作用。表面等离子体共振光谱的应用为研究与光可逆结构变化相关的光敏色素的表面特性,以及研究光敏色素与其参与植物光信号事件的相互作用蛋白之间的蛋白质 - 蛋白质相互作用提供了一种新方法。

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