Kopecný David, Sebela Marek, Briozzo Pierre, Spíchal Lukás, Houba-Hérin Nicole, Masek Vlastimil, Joly Nathalie, Madzak Catherine, Anzenbacher Pavel, Laloue Michel
Laboratoire de Biologie Cellulaire, INRA, Route de Saint-Cyr, F-78026 Versailles Cedex, France.
J Mol Biol. 2008 Jul 25;380(5):886-99. doi: 10.1016/j.jmb.2008.05.044. Epub 2008 May 24.
Cytokinin oxidases/dehydrogenases (CKOs) mediate catabolic regulation of cytokinin levels in plants. Several substrate analogs containing an unsaturated side chain were studied for their possible inhibitory effect on maize CKO (ZmCKO1) by use of various bioanalytical methods. Two allenic derivatives, N(6)-(buta-2,3-dienyl)adenine (HA-8) and N(6)-(penta-2,3-dienyl)adenine (HA-1), were identified as strong mechanism-based inhibitors of the enzyme. Despite exhaustive dialysis, the enzyme remained inhibited. Conversely, substrate analogs with a triple bond in the side chain were much weaker inactivators. The crystal structures of recombinant ZmCKO1 complexed with HA-1 or HA-8 were solved to 1.95 A resolution. Together with Raman spectra of the inactivated enzyme, it was revealed that reactive imine intermediates generated by oxidation of the allenic inhibitors covalently bind to the flavin adenine dinucleotide (FAD) cofactor. The binding occurs at the C4a atom of the isoalloxazine ring of FAD, the planarity of which is consequently disrupted. All the compounds under study were also analyzed for binding to the Arabidopsis cytokinin receptors AHK3 and AHK4 in a bacterial receptor assay and for cytokinin activity in the Amaranthus bioassay. HA-1 and HA-8 were found to be good receptor ligands with a significant cytokinin activity. Nevertheless, due to their ability to inactivate CKO in the desired time intervals or developmental stages, they both represent attractive compounds for physiological studies, as the inhibition mechanism of HA-1 and HA-8 is mainly FAD dependent.
细胞分裂素氧化酶/脱氢酶(CKOs)介导植物中细胞分裂素水平的分解代谢调控。通过各种生物分析方法,研究了几种含有不饱和侧链的底物类似物对玉米CKO(ZmCKO1)的可能抑制作用。两种丙二烯衍生物,N⁶-(丁-2,3-二烯基)腺嘌呤(HA-8)和N⁶-(戊-2,3-二烯基)腺嘌呤(HA-1),被鉴定为该酶的强效基于机制的抑制剂。尽管进行了彻底透析,该酶仍保持抑制状态。相反,侧链中带有三键的底物类似物是弱得多的失活剂。解析了与HA-1或HA-8复合的重组ZmCKO1的晶体结构,分辨率达到1.95 Å。结合失活酶的拉曼光谱表明,丙二烯抑制剂氧化产生的反应性亚胺中间体与黄素腺嘌呤二核苷酸(FAD)辅因子共价结合。结合发生在FAD异咯嗪环的C4a原子上,其平面性因此被破坏。在细菌受体测定中,还分析了所有研究的化合物与拟南芥细胞分裂素受体AHK3和AHK4的结合情况,以及在苋属生物测定中的细胞分裂素活性。发现HA-1和HA-8是具有显著细胞分裂素活性的良好受体配体。然而,由于它们能够在所需的时间间隔或发育阶段使CKO失活,它们都是生理研究中有吸引力的化合物,因为HA-1和HA-8的抑制机制主要依赖于FAD。