Schröder G, Brown J W, Schröder J
Institut für Biologie II, Universität Freiburg, Federal Republic of Germany.
Eur J Biochem. 1988 Feb 15;172(1):161-9. doi: 10.1111/j.1432-1033.1988.tb13868.x.
Resveratrol synthase (RS), a key enzyme in biosynthesis of stilbene-type phytoalexins, catalyzes the formation of resveratrol from coumaroyl-CoA and malonyl-CoA. Two cDNA clones, pGSC1 and pGSC2, have been isolated from cDNA libraries established with poly(A)-rich RNA from peanut (Arachis hypogaea) cell cultures specifically induced for RS. These cDNAs were used to identify two genomic clones (pGSG10 and pGSG11). Sequence analysis shows that the two clones overlap in a large stretch of nearly identical sequences, and that pGSG10 contains the 5' and pGSG11 the 3' end of RS genes. The sequences reveal a single intron, and the size of the predicted protein is 42.7 kDa, in close agreement with that observed in polyacrylamide gels (43 kDa). Chalcone synthase (CHS), a key enzyme of flavonoid biosynthesis, utilizes the same substrates as RS, but the product is different (naringenin chalcone). Comparison of RS with CHS consensus sequences shows that the two genes are related. Homology extends throughout the coding region, and the intron in RS is at the same position as a conserved intron in CHS. However, RS reveals a substantial number of amino acid differences to CHS in positions highly conserved in all CHS enzymes. It is proposed that the two proteins possess a common scaffold necessary for binding of the substrates and the type of enzyme reaction, and that the differences are responsible for the formation of different products.
白藜芦醇合酶(RS)是芪类植物抗毒素生物合成中的关键酶,催化香豆酰辅酶A和丙二酰辅酶A生成白藜芦醇。从用花生(Arachis hypogaea)细胞培养物中富含多聚腺苷酸的RNA构建的cDNA文库中分离出了两个cDNA克隆,pGSC1和pGSC2,这些细胞培养物是专门针对RS诱导的。这些cDNA被用于鉴定两个基因组克隆(pGSG10和pGSG11)。序列分析表明,这两个克隆在一大段几乎相同的序列中重叠,并且pGSG10包含RS基因的5'端,pGSG11包含3'端。序列显示有一个单一内含子,预测的蛋白质大小为42.7 kDa,与在聚丙烯酰胺凝胶中观察到的大小(43 kDa)非常一致。查尔酮合酶(CHS)是类黄酮生物合成的关键酶,与RS利用相同的底物,但产物不同(柚皮素查尔酮)。将RS与CHS的共有序列进行比较表明,这两个基因是相关的。同源性延伸至整个编码区,并且RS中的内含子与CHS中一个保守内含子处于相同位置。然而,在所有CHS酶中高度保守的位置上,RS与CHS显示出大量氨基酸差异。有人提出,这两种蛋白质拥有结合底物和酶反应类型所必需的共同支架,而这些差异导致了不同产物的形成。