Hooks M A, Kellas F, Graham I A
Plant Molecular Science Group, Division of Biochemistry, Institute of Biomedical and Life Sciences, University of Glasgow, UK.
Plant J. 1999 Oct;20(1):1-13. doi: 10.1046/j.1365-313x.1999.00559.x.
Full-length cDNAs coding for two distinct acyl-CoA oxidases were isolated by screening an Arabidopsis cDNA library. The genes for the two acyl-CoA oxidases have been termed AtACX1 and AtACX2. AtACX1 encodes a peptide of 664 amino acids possessing a molecular mass of 74.3 kDa. AtACX2 encodes a peptide of 691 amino acids in length with a molecular mass of 77.5 kDa. Peroxisomal targeting signals were identified in the primary sequences. AtACX1 has a putative PTS1, whereas AtACX2 has a characteristic PTS2. Expression of AtACX1 and AtACX2 in Escherichia coli gave active enzymes for enzymatic and biochemical analysis. AtACX1 was active with both medium-and long-chain saturated fatty acyl-CoAs and showed maximal activity with C14-CoA. Activity with mono-unsaturated acyl-CoAs was slightly higher than with the corresponding saturated acyl-CoA. AtACX2 was active with long-chain acyl-CoAs and showed maximal activity with C18-CoA. AtACX2 activity with mono-unsaturated acyl-CoAs was approximately twice as high as with the corresponding saturated acyl-CoA. Both enzymes have an apparent Km of approximately 5 microM with the preferred substrate. Northern analysis was conducted to determine the expression patterns of AtACX1 and AtACX2 during germination and in various tissues of a mature plant. The two genes showed generally similar expression profiles and steady-state mRNA levels in seedlings and mature tissues, but subtle differences were observed. Enzymatic analyses of plant extracts revealed that AtACX1 and AtACX2 are members of a family that includes acyl-CoA oxidases specific for shorter-chain acyl-CoAs. Through expression of antisense constructs of the individual genes, we were able to decrease long-chain oxidase activity only in antisense AtACX1 plants. Seedlings with long-chain oxidase activity reduced down to 30% of wild-type levels germinated and established normally; however, reduced root growth appeared to be a general feature of antisense AtACX1 plants.
通过筛选拟南芥cDNA文库,分离出了编码两种不同酰基辅酶A氧化酶的全长cDNA。这两种酰基辅酶A氧化酶的基因被命名为AtACX1和AtACX2。AtACX1编码一个由664个氨基酸组成的肽,分子量为74.3 kDa。AtACX2编码一个长度为691个氨基酸的肽,分子量为77.5 kDa。在一级序列中鉴定出了过氧化物酶体靶向信号。AtACX1有一个推定的PTS1,而AtACX2有一个特征性的PTS2。AtACX1和AtACX2在大肠杆菌中的表达产生了用于酶学和生化分析的活性酶。AtACX1对中链和长链饱和脂肪酰基辅酶A均有活性,对C14-CoA表现出最大活性。对单不饱和脂肪酰基辅酶A的活性略高于相应的饱和脂肪酰基辅酶A。AtACX2对长链脂肪酰基辅酶A有活性,对C18-CoA表现出最大活性。AtACX2对单不饱和脂肪酰基辅酶A的活性约为相应饱和脂肪酰基辅酶A的两倍。两种酶对首选底物的表观Km约为5 microM。进行了Northern分析以确定AtACX1和AtACX2在萌发过程中和成熟植物的各种组织中的表达模式。这两个基因在幼苗和成熟组织中显示出大致相似的表达谱和稳态mRNA水平,但观察到了细微差异。对植物提取物的酶学分析表明,AtACX1和AtACX2是一个家族的成员,该家族包括对较短链脂肪酰基辅酶A具有特异性的酰基辅酶A氧化酶。通过单个基因反义构建体的表达,我们仅在反义AtACX1植物中降低了长链氧化酶活性。长链氧化酶活性降低至野生型水平30%的幼苗正常萌发和生长;然而,根生长减少似乎是反义AtACX1植物的一个普遍特征。