Hellyer A, Leadlay P F, Slabas A R
Unilever Research, Sharnbrook, Bedford, UK.
Plant Mol Biol. 1992 Dec;20(5):763-80. doi: 10.1007/BF00027148.
The level of two thioesterases, acyl-CoA thioesterase and acyl-ACP thioesterase was determined during seed maturation in oil seed rape. Both thioesterase activities rose markedly prior to the onset of lipid accumulation, but the induction kinetics suggest that the activities reside on distinct polypeptides. Acyl-ACP thioesterase (EC 3.1.2.14) was purified 2000-fold using a combination of ion exchange, ACP-affinity chromatography, chromatofocusing and gel filtration. Using native gel electrophoresis, and assays for enzymic activity, two polypeptides were identified on SDS-PAGE as associated with the activity. Cleveland mapping of these polypeptides, of 38 kDa component and 33 kDa respectively, demonstrated that they are related. An antibody was prepared against the 38 kDa component, and this also recognises the 33 kDa polypeptide in highly purified preparations. Western blotting of a crude extract identifies one band at 38 kDa consistent with the 33 kDa component being a degradation product generated during purification. The native molecule has a M(r) of 70 kDa indicating a dimeric structure. The enzyme has a pH optimum of 9.5 and shows strong preference for oleoyl-ACP as substrate. The intact enzyme has an N-terminus blocked to protein sequencing. We also found that two other polypeptides co-purify with acyl-ACP thioesterase under native conditions. The N-terminal amino-acid sequence of these polypeptides is shown and their possible identity is discussed.
在油菜种子成熟过程中测定了两种硫酯酶(酰基辅酶A硫酯酶和酰基-ACP硫酯酶)的水平。在脂质积累开始之前,两种硫酯酶的活性均显著升高,但诱导动力学表明这些活性存在于不同的多肽上。使用离子交换、ACP亲和色谱、色谱聚焦和凝胶过滤相结合的方法,将酰基-ACP硫酯酶(EC 3.1.2.14)纯化了2000倍。利用天然凝胶电泳和酶活性测定,在SDS-PAGE上鉴定出两种与该活性相关的多肽。对这些分别为38 kDa和33 kDa的多肽进行Cleveland图谱分析,表明它们是相关的。制备了针对38 kDa组分的抗体,该抗体在高度纯化的制剂中也能识别33 kDa的多肽。对粗提物进行Western印迹分析,在38 kDa处鉴定出一条带,这与33 kDa的组分是纯化过程中产生的降解产物一致。天然分子的相对分子质量为70 kDa,表明其为二聚体结构。该酶的最适pH为9.5,对油酰-ACP作为底物表现出强烈的偏好。完整的酶N端被封闭,无法进行蛋白质测序。我们还发现,在天然条件下,另外两种多肽与酰基-ACP硫酯酶共纯化。展示了这些多肽的N端氨基酸序列,并讨论了它们可能的身份。