Li Yi, Kim Jeong Im, Pysh Len, Chapple Clint
Department of Biochemistry, Purdue University, West Lafayette, Indiana 47907 (Y.L., J.I.K., C.C.); andDepartment of Biology, Roanoke College, Salem, Virginia 24153 (L.P.).
Department of Biochemistry, Purdue University, West Lafayette, Indiana 47907 (Y.L., J.I.K., C.C.); andDepartment of Biology, Roanoke College, Salem, Virginia 24153 (L.P.)
Plant Physiol. 2015 Dec;169(4):2409-21. doi: 10.1104/pp.15.00838. Epub 2015 Oct 21.
The biosynthesis of lignin, flavonoids, and hydroxycinnamoyl esters share the first three enzymatic steps of the phenylpropanoid pathway. The last shared step is catalyzed by 4-coumarate:CoA ligase (4CL), which generates p-coumaroyl CoA and caffeoyl CoA from their respective acids. Four isoforms of 4CL have been identified in Arabidopsis (Arabidopsis thaliana). Phylogenetic analysis reveals that 4CL1, 4CL2, and 4CL4 are more closely related to each other than to 4CL3, suggesting that the two groups may serve different biological functions. Promoter-GUS analysis shows that 4CL1 and 4CL2 are expressed in lignifying cells. In contrast, 4CL3 is expressed in a broad range of cell types, and 4CL3 has acquired a distinct role in flavonoid metabolism. Sinapoylmalate, the major hydroxycinnamoyl ester found in Arabidopsis, is greatly reduced in the 4cl1 4cl3 mutant, showing that 4CL1 and 4CL3 function redundantly in its biosynthesis. 4CL1 accounts for the majority of the total 4CL activity, and loss of 4CL1 leads to reduction in lignin content but no growth defect. The 4cl1 4cl2 and 4cl1 4cl2 4cl3 mutants are both dwarf but do not have further reduced lignin than the 4cl1 mutant, indicating that either 4CL1 or 4CL2 is required for normal plant growth. Although 4CL4 has a limited expression profile, it does make a modest contribution to lignin biosynthesis. Together, these data show that the four isoforms of 4CL in Arabidopsis have overlapping yet distinct roles in phenylpropanoid metabolism.
木质素、类黄酮和羟基肉桂酸酯的生物合成共享苯丙烷途径的前三个酶促步骤。最后一个共享步骤由4-香豆酸:辅酶A连接酶(4CL)催化,该酶从各自的酸生成对香豆酰辅酶A和咖啡酰辅酶A。在拟南芥中已鉴定出4CL的四种同工型。系统发育分析表明,4CL1、4CL2和4CL4彼此之间的关系比与4CL3更密切,这表明这两组可能具有不同的生物学功能。启动子-GUS分析表明,4CL1和4CL2在木质化细胞中表达。相比之下,4CL3在广泛的细胞类型中表达,并且4CL3在类黄酮代谢中发挥了独特作用。芥子酰苹果酸是拟南芥中发现的主要羟基肉桂酸酯,在4cl1 4cl3突变体中大大减少,表明4CL1和4CL3在其生物合成中功能冗余。4CL1占4CL总活性的大部分,4CL1的缺失导致木质素含量降低,但没有生长缺陷。4cl1 4cl2和4cl1 4cl2 4cl3突变体都是矮小的,但木质素含量没有比4cl1突变体进一步降低,这表明正常植物生长需要4CL1或4CL2。尽管4CL4的表达谱有限,但它确实对木质素生物合成有一定贡献。总之,这些数据表明拟南芥中4CL的四种同工型在苯丙烷代谢中具有重叠但不同的作用。