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来自拟南芥的酰基辅酶A硫酯酶ACH2的生化和分子特征

Biochemical and molecular characterization of ACH2, an acyl-CoA thioesterase from Arabidopsis thaliana.

作者信息

Tilton Gregory B, Shockey Jay M, Browse John

机构信息

Institute of Biological Chemistry, Washington State University, Pullman, Washington 99164-6340, USA.

出版信息

J Biol Chem. 2004 Feb 27;279(9):7487-94. doi: 10.1074/jbc.M309532200. Epub 2003 Dec 2.

Abstract

By using computer-based homology searches of the Arabidopsis genome, we identified the gene for ACH2, a putative acyl-CoA thioesterase. With the exception of a unique 129-amino acid N-terminal extension, the ACH2 protein is 17-36% identical to members of a family of acyl-CoA thioesterases that are found in both prokaryotes and eukaryotes. The eukaryotic homologs of ACH2 are peroxisomal acyl-CoA thioesterases that are up-regulated during times of increased fatty acid oxidation, suggesting potential roles in peroxisomal beta-oxidation. We investigated ACH2 to determine whether it has a similar role in the plant cell. Like its eukaryotic homologs, ACH2 carries a putative type 1 peroxisomal targeting sequence (-SKL(COOH)), and maintains all the catalytic residues typical of this family of acyl-CoA thioesterases. Analytical ultracentrifugation of recombinant ACH2-6His shows that it associates as a 196-kDa homotetramer in vitro, a result that is significant in light of the cooperative kinetics demonstrated by ACH2-6His in vitro. The cooperative effects are most pronounced with medium chain acyl-CoAs, where the Hill coefficient is 3.8 for lauroyl-CoA, but decrease for long chain acyl-CoAs, where the Hill coefficient is only 1.9 for oleoyl-CoA. ACH2-6His hydrolyzes both medium and long chain fatty acyl-CoAs but has highest activity toward the long chain unsaturated fatty acyl-CoAs. Maximum rates were found with palmitoleoyl-CoA, which is hydrolyzed at 21 micromol/min/mg protein. Additionally, ACH2-6His is insensitive to feedback inhibition by free CoASH levels as high as 100 microm. ACH2 is most highly expressed in mature tissues such as young leaves and flowers rather than in germinating seedlings where beta-oxidation is rapidly proceeding. Taken together, these results suggest that ACH2 activity is not linked to fatty acid oxidation as has been suggested for its eukaryotic homologs, but rather has a unique role in the plant cell.

摘要

通过基于计算机对拟南芥基因组进行同源性搜索,我们鉴定出了ACH2基因,它是一种假定的酰基辅酶A硫酯酶。除了一个独特的129个氨基酸的N端延伸外,ACH2蛋白与在原核生物和真核生物中均存在的酰基辅酶A硫酯酶家族成员有17%-36%的同源性。ACH2的真核同源物是过氧化物酶体酰基辅酶A硫酯酶,在脂肪酸氧化增加时会上调,这表明其在过氧化物酶体β氧化中可能发挥作用。我们对ACH2进行了研究,以确定它在植物细胞中是否具有类似作用。与它的真核同源物一样,ACH2带有一个假定的1型过氧化物酶体靶向序列(-SKL(COOH)),并保留了该酰基辅酶A硫酯酶家族所有典型的催化残基。对重组ACH2-6His进行分析超速离心表明,它在体外以196 kDa的同四聚体形式存在,鉴于ACH2-6His在体外表现出的协同动力学,这一结果具有重要意义。协同效应在中链酰基辅酶A中最为明显,月桂酰辅酶A的希尔系数为3.8,但在长链酰基辅酶A中则降低,油酰辅酶A的希尔系数仅为1.9。ACH2-6His既能水解中链也能水解长链脂肪酰基辅酶A,但对长链不饱和脂肪酰基辅酶A的活性最高。棕榈油酰辅酶A的水解速率最高,为21微摩尔/分钟/毫克蛋白。此外,ACH2-6His对高达100微摩尔的游离辅酶A水平的反馈抑制不敏感。ACH2在成熟组织如幼叶和花中表达最高,而不是在β氧化快速进行的萌发幼苗中。综上所述,这些结果表明,ACH2的活性并不像其真核同源物那样与脂肪酸氧化相关,而是在植物细胞中具有独特作用。

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