Department of Biochemistry, Purdue University, West Lafayette, IN 47907, USA.
Plant J. 2009 Dec;60(5):771-82. doi: 10.1111/j.1365-313X.2009.03996.x. Epub 2009 Aug 13.
The initial reactions of the phenylpropanoid pathway convert phenylalanine to p-coumaroyl CoA, a branch point metabolite from which many phenylpropanoids are made. Although the second enzyme of this pathway, cinnamic acid 4-hydroxylase (C4H), is well characterized, a mutant for the gene encoding this enzyme has not yet, to our knowledge, been identified, presumably because knock-out mutations in this gene would have severe phenotypes. This work describes the characterization of an allelic series of Arabidopsis reduced epidermal fluorescence 3 (ref3) mutants, each of which harbor mis-sense mutations in C4H (At2g30490). Heterologous expression of the mutant proteins in Escherichia coli yields enzymes that exhibit P420 spectra, indicative of mis-folded proteins, or have limited ability to bind substrate, indicating that the mutations we have identified affect protein stability and/or enzyme function. In agreement with the early position of C4H in phenylpropanoid metabolism, ref3 mutant plants accumulate decreased levels of several different classes of phenylpropanoid end-products, and exhibit reduced lignin deposition and altered lignin monomer content. Furthermore, these plants accumulate a novel hydroxycinnamic ester, cinnamoylmalate, which is not found in the wild type. The decreased C4H activity in ref3 also causes pleiotropic phenotypes, including dwarfism, male sterility and the development of swellings at branch junctions. Together, these observations indicate that C4H function is critical to the normal biochemistry and development of Arabidopsis.
苯丙素途径的初始反应将苯丙氨酸转化为 p-香豆酰辅酶 A,这是一种分支代谢物,许多苯丙素类物质都由此生成。虽然该途径的第二个酶,肉桂酸 4-羟化酶(C4H)已经得到很好的描述,但到目前为止,我们还没有鉴定出该酶编码基因的突变体,这可能是因为该基因的敲除突变会产生严重的表型。本工作描述了拟南芥低表皮荧光 3(ref3)突变体等位基因系列的特征,每个突变体都在 C4H(At2g30490)中携带错义突变。突变蛋白在大肠杆菌中的异源表达产生的酶表现出 P420 光谱,表明蛋白质错误折叠,或者结合底物的能力有限,这表明我们鉴定的突变影响了蛋白质稳定性和/或酶功能。与苯丙素代谢中 C4H 的早期位置一致,ref3 突变体植物积累的几种不同类别的苯丙素终产物水平降低,木质素沉积减少,木质素单体含量改变。此外,这些植物还积累了一种新的羟基肉桂酸酯,肉桂酰苹果酸酯,在野生型中未发现。ref3 中 C4H 活性的降低也导致了多种表型,包括矮化、雄性不育和分枝交界处肿胀的形成。综上所述,这些观察结果表明 C4H 的功能对拟南芥的正常生物化学和发育至关重要。