Suppr超能文献

具有非共价结合生色团的植物色素:脱辅基植物色素引导四吡咯光异构化的能力。

Phytochromes with noncovalently bound chromophores: the ability of apophytochromes to direct tetrapyrrole photoisomerization.

作者信息

Jorissen Helena J M M, Quest Benjamin, Lindner Ingo, Tandeau de Marsac Nicole, Gärtner Wolfgang

机构信息

Max-Planck-Institut für Strahlenchemie, Mülheim, Germany.

出版信息

Photochem Photobiol. 2002 May;75(5):554-9. doi: 10.1562/0031-8655(2002)075<0554:pwnbct>2.0.co;2.

Abstract

Chromophore-apoprotein interactions were studied with recombinant apoproteins, oat phytochrome (phyA) and CphB of the cyanobacterium Calothrix PCC7601, which were both incubated with the bilin compounds biliverdin (BV) IXalpha, phycocyanobilin (PCB) and the 3'-methoxy derivative of PCB. Previously it was shown that CphB and its homolog in Calothrix, CphA, show strong sequence similarities with each other and with the phytochromes of higher and lower plants, despite the fact that CphB carries a leucine instead of a cysteine at the chromophore attachment position and thus holds the chromophore only noncovalently. CphA binds tetrapyrrole chromophores in a covalent, phytochrome-like manner. For both eyanobacterial phytochromes, red and far-red light-induced photochemistry has been reported. Thus, the role of the binding site of CphB in directing the photochemistry of noncovalently bound tetrapyrroles was analyzed in comparison with the apoprotein from phyA phytochrome. Both the aforementioned compounds, which were used as chromophores, are not able to form covalent bonds with a phytochrome-type apoprotein because of their chemical structure (vinyl group at position 3 or methoxy group at position 3'). The BV adducts of both apoproteins showed phytochrome-like photochemistry (formation of red and far-red-absorbing forms of phytochrome [P(r) and P(fr) forms]). However, incubation of the oat apophytochrome with BV primarily yields a 700 nm form from which the P(r)-P(fr) photochemistry can be initiated and to which the system relaxes in the dark after illumination. The results for CphB were compared with a CphB mutant where the chromophore-binding cysteine had been introduced, which, upon incubation with PCB, shows spectral properties nearly identical with its (covalently binding) CphA homolog. A comparison of the spectral properties (P(r) and P(fr) forms) of all the PCB- and BV-containing chromoproteins reveals that the binding site of the cyanobacterial apoprotein is better suited than the plant (oat) phytochrome to noncovalently incorporate the chromophore and to regulate its photochemistry. Our findings support the proposal that the recently identified phytochrome-like prokaryotic photoreceptors, which do not contain a covalently bound chromophore, may trigger a light-induced physiological response.

摘要

利用重组脱辅基蛋白、燕麦光敏色素(phyA)和蓝细菌集胞藻PCC7601的CphB研究了生色团 - 脱辅基蛋白相互作用,这两种蛋白均与胆绿素(BV)IXα、藻蓝胆素(PCB)以及PCB的3'-甲氧基衍生物等胆素化合物一起孵育。此前研究表明,CphB及其在集胞藻中的同源物CphA,彼此之间以及与高等和低等植物的光敏色素都有很强的序列相似性,尽管事实上CphB在生色团附着位置携带的是亮氨酸而非半胱氨酸,因此仅以非共价方式结合生色团。CphA以共价的、类似光敏色素的方式结合四吡咯生色团。对于这两种蓝细菌光敏色素,都有关于红光和远红光诱导光化学的报道。因此,与phyA光敏色素的脱辅基蛋白相比,分析了CphB的结合位点在指导非共价结合的四吡咯光化学中的作用。由于其化学结构(3位的乙烯基或3'位的甲氧基),上述用作生色团的两种化合物都无法与光敏色素型脱辅基蛋白形成共价键。两种脱辅基蛋白的BV加合物都表现出类似光敏色素的光化学性质(形成光敏色素的红光吸收和远红光吸收形式[P(r)和P(fr)形式])。然而,燕麦脱辅基光敏色素与BV孵育主要产生一种700nm的形式,从该形式可以引发P(r)-P(fr)光化学,并且在光照后系统在黑暗中会松弛到该形式。将CphB的结果与引入了生色团结合半胱氨酸的CphB突变体进行了比较,该突变体与PCB孵育后,其光谱性质与其(共价结合的)CphA同源物几乎相同。对所有含PCB和BV的色素蛋白的光谱性质(P(r)和P(fr)形式)进行比较发现,蓝细菌脱辅基蛋白的结合位点比植物(燕麦)光敏色素更适合非共价结合生色团并调节其光化学。我们的研究结果支持了这样的提议,即最近鉴定出的不含共价结合生色团的类似光敏色素的原核光感受器可能触发光诱导的生理反应。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验