Li B, Tsing S, Kosaka A H, Nguyen B, Osen E G, Bach C, Chan H, Barnett J
Biotechnology, Syntex Discovery Research, Palo Alto, CA 94304, USA.
Biochem J. 1996 Jan 1;313 ( Pt 1)(Pt 1):57-64. doi: 10.1042/bj3130057.
Human dopamine beta-hydroxylase (DBH) has been expressed in transformed Drosophila Schneider 2 (S2) cells with yields of > 16 mg/l. Most of the activity was found in the culture fluid. Similarly, human neuroblastoma cells also secrete native DBH into the medium, but at a much lower level than recombinant Drosophila cells. We have purified native and recombinant human DBH by a modified purification procedure using SP-Sepharose, lentil lectin-Sepharose and gel-filtration chromatography and carried out studies to compare the two enzymes. Two variants of human DBH that differ by a single amino acid (either serine or alanine) at position 304 were expressed in Drosophila cells, purified, and found to have no significant difference in enzyme activity. The molecular mass of human DBH monomer has been determined from SDS/PAGE to be 73 kDa, but the recombinant DBH from Drosophila is smaller at 66 kDa. The difference may be due to glycosylation as deglycosylated enzymes from both sources are identical in size (61 kDa). The Km of tyramine for native and recombinant human enzymes are virtually the same but higher than bovine DBH by about 3-fold. Likewise, the inhibition of native and recombinant human DBH by fusaric acid and SKF102698 is not significantly different but IC50 values are 2-3-fold higher than that for the bovine enzyme. These results strongly support the conclusion that recombinant human DBH from Drosophila S2 cells can be used in place of human neuroblastoma-derived DBH for drug screening, characterization of the enzyme's physicochemical properties, and determination of structure-function relationships. The Drosophila expression system has thus provided a convenient source for large quantities of human DBH enzyme.
人多巴胺β-羟化酶(DBH)已在转化的果蝇施耐德2(S2)细胞中表达,产量超过16mg/l。大部分活性存在于培养液中。同样,人神经母细胞瘤细胞也将天然DBH分泌到培养基中,但水平远低于重组果蝇细胞。我们通过使用SP-琼脂糖凝胶、扁豆凝集素-琼脂糖凝胶和凝胶过滤色谱的改良纯化程序纯化了天然和重组人DBH,并进行了研究以比较这两种酶。在果蝇细胞中表达了在第304位氨基酸上相差一个氨基酸(丝氨酸或丙氨酸)的两种人DBH变体,进行了纯化,发现它们在酶活性上没有显著差异。通过SDS/PAGE测定人DBH单体的分子量为73kDa,但来自果蝇的重组DBH较小,为66kDa。这种差异可能是由于糖基化,因为来自两种来源的去糖基化酶大小相同(61kDa)。天然和重组人酶对酪胺的Km值几乎相同,但比牛DBH高约3倍。同样,镰刀菌酸和SKF102698对天然和重组人DBH的抑制作用没有显著差异,但IC50值比牛酶高2-3倍。这些结果有力地支持了以下结论:来自果蝇S2细胞的重组人DBH可用于替代人神经母细胞瘤来源的DBH进行药物筛选、酶的物理化学性质表征以及结构-功能关系的确定。果蝇表达系统因此为大量生产人DBH酶提供了一个便利的来源。