Shen Guoan, Pang Yongzhen, Wu Weisheng, Deng Zhongxiang, Zhao Lingxia, Cao Youfang, Sun Xiaofen, Tang Kexuan
Shanghai Key Laboratory of Biotechnology, Plant Biotechnology Research Center, Fudan-SJTU-Nottingham Plant Biotechnology R&D Center, School of Agriculture and Biology, Shanghai Jiao Tong University, 200030 Shanghai, People's Republic of China.
Biosci Rep. 2006 Feb;26(1):19-29. doi: 10.1007/s10540-006-9007-y.
Flavanone 3-hydroxylase (F3H) activity is necessary for the biosynthesis of flavonoids, the main ingredients of Gingko biloba extract. The full-length cDNA and genomic DNA sequences of F3H gene were isolated from G. biloba for the first time. The full-length cDNA of G. biloba F3H gene (designated as GbF3H) contained a 1071 bp open reading frame (ORF) encoding a 357-amino-acid protein with a calculated molecular weight of about 40 kDa and isoelectric point (pI) of 5.57. The genomic DNA analysis showed that GbF3H gene had three exons and two introns. The deduced GbF3H protein showed high identities to other plant F3Hs. The conserved amino acids ligating ferrous iron and residues participating in 2-oxoglutarate binding (R-X-S) were found in GbF3H at the similar positions like other F3Hs. Three-dimensional structure modeling showed that GbF3H had a jerry roll in the enzyme core consisted of beta-sheet, a typical structure shared by all 2-oxoglutarate-dependent dioxygenases including F3Hs. Phylogenetic tree analysis revealed that GbF3H shared the same ancestor in evolution with other F3Hs and had a further relationship with other angiosperms species. Southern blot analysis indicated that GbF3H belonged to a multi-gene family. Transcription analysis revealed that GbF3H expressed in stem and leaf with the highest transcription level in leaf. The isolation and characterization of GbF3H gene will be helpful to further study the role of GbF3H gene in the biosynthesis of flavonoids in G. biloba.
黄烷酮3-羟化酶(F3H)活性是黄酮类化合物生物合成所必需的,黄酮类化合物是银杏叶提取物的主要成分。首次从银杏中分离出F3H基因的全长cDNA和基因组DNA序列。银杏F3H基因(命名为GbF3H)的全长cDNA包含一个1071 bp的开放阅读框(ORF),编码一个357个氨基酸的蛋白质,计算分子量约为40 kDa,等电点(pI)为5.57。基因组DNA分析表明,GbF3H基因有3个外显子和2个内含子。推导的GbF3H蛋白与其他植物F3H具有高度同源性。在GbF3H中发现了与亚铁离子结合的保守氨基酸以及参与2-氧代戊二酸结合的残基(R-X-S),其位置与其他F3H相似。三维结构建模表明,GbF3H在由β-折叠组成的酶核心中有一个杰里卷结构,这是包括F3H在内的所有依赖2-氧代戊二酸的双加氧酶共有的典型结构。系统发育树分析表明,GbF3H在进化上与其他F3H有共同的祖先,并且与其他被子植物物种有更近的关系。Southern杂交分析表明,GbF3H属于一个多基因家族。转录分析表明,GbF3H在茎和叶中表达,在叶中的转录水平最高。GbF3H基因的分离和鉴定将有助于进一步研究GbF3H基因在银杏黄酮类化合物生物合成中的作用。