Qin Y M, Haapalainen A M, Kilpeläinen S H, Marttila M S, Koski M K, Glumoff T, Novikov D K, Hiltunen J K
Biocenter Oulu and Department of Biochemistry, University of Oulu, Box 3000, FIN-90014 Oulun Yliopisto, Finland.
J Biol Chem. 2000 Feb 18;275(7):4965-72. doi: 10.1074/jbc.275.7.4965.
Beta-oxidation of acyl-CoAs in mammalian peroxisomes can occur via either multifunctional enzyme type 1 (MFE-1) or type 2 (MFE-2), both of which catalyze the hydration of trans-2-enoyl-CoA and the dehydrogenation of 3-hydroxyacyl-CoA, but with opposite chiral specificity. Amino acid sequence alignment of the 2-enoyl-CoA hydratase 2 domain in human MFE-2 with other MFE-2s reveals conserved protic residues: Tyr-347, Glu-366, Asp-370, His-406, Glu-408, Tyr-410, Asp-490, Tyr-505, Asp-510, His-515, Asp-517, and His-532. To investigate their potential roles in catalysis, each residue was replaced by alanine in site-directed mutagenesis, and the resulting constructs were tested for complementation in a yeast. After additional screening, the wild type and noncomplementing E366A and D510A variants were expressed and characterized. The purified proteins have similar secondary structural elements, with the same subunit composition. The E366A variant had a k(cat)/K(m) value 100 times lower than that of the wild type MFE-2 at pH 5, whereas the D510A variant was inactive. Asp-510 was imbedded in a novel hydratase 2 motif found in the hydratase 2 proteins. The data show that the hydratase 2 reaction catalyzed by MFE-2 requires two protic residues, Glu-366 and Asp-510, suggesting that their catalytic role may be equivalent to that of the two catalytic residues of hydratase 1.
哺乳动物过氧化物酶体中酰基辅酶A的β-氧化可通过多功能酶1型(MFE-1)或2型(MFE-2)进行,这两种酶均催化反式-2-烯酰辅酶A的水合作用和3-羟酰基辅酶A的脱氢作用,但具有相反的手性特异性。人MFE-2中2-烯酰辅酶A水合酶2结构域与其他MFE-2的氨基酸序列比对显示了保守的质子供体残基:Tyr-347、Glu-366、Asp-370、His-406、Glu-408、Tyr-410、Asp-490、Tyr-505、Asp-510、His-515、Asp-517和His-532。为了研究它们在催化中的潜在作用,在定点诱变中每个残基都被丙氨酸取代,并测试所得构建体在酵母中的互补作用。经过进一步筛选,表达并表征了野生型以及不能互补的E366A和D510A变体。纯化后的蛋白质具有相似的二级结构元件和相同的亚基组成。在pH 5时,E366A变体的k(cat)/K(m)值比野生型MFE-2低100倍,而D510A变体无活性。Asp-510嵌入在水合酶2蛋白中发现的一个新的水合酶2基序中。数据表明,MFE-2催化的水合酶2反应需要两个质子供体残基Glu-366和Asp-510,这表明它们的催化作用可能等同于水合酶1的两个催化残基的作用。