Broun P, Shanklin J, Whittle E, Somerville C
Carnegie Institution of Washington, Department of Plant Biology, 260 Panama Street, Stanford, CA 94305, USA.
Science. 1998 Nov 13;282(5392):1315-7. doi: 10.1126/science.282.5392.1315.
Higher plants exhibit extensive diversity in the composition of seed storage fatty acids. This is largely due to the presence of various combinations of double or triple bonds and hydroxyl or epoxy groups, which are synthesized by a family of structurally similar enzymes. As few as four amino acid substitutions can convert an oleate 12-desaturase to a hydroxylase and as few as six result in conversion of a hydroxylase to a desaturase. These results illustrate how catalytic plasticity of these diiron enzymes has contributed to the evolution of the chemical diversity found in higher plants.
高等植物种子储存脂肪酸的组成具有广泛的多样性。这主要是由于存在双键或三键以及羟基或环氧基的各种组合,这些都是由一族结构相似的酶合成的。少至四个氨基酸替换就能将油酸12-去饱和酶转化为羟化酶,少至六个氨基酸替换就能将羟化酶转化为去饱和酶。这些结果说明了这些双铁酶的催化可塑性是如何促进高等植物中化学多样性的进化的。