Janolino V G, Morrison-Rowe S J, Swaisgood H E
Department of Food Science, North Carolina State University, Raleigh 27695-7624.
J Dairy Sci. 1990 Sep;73(9):2287-91. doi: 10.3168/jds.S0022-0302(90)78909-6.
The isolation of sulfhydryl oxidase from bovine milk in a suitably pure form for sequencing was carried out by transient covalent affinity chromatography of diafiltered whey using cysteinylsuccinamidopropyl-glass as matrix. The glutathione-eluted proteins were separated by SDS-PAGE. By radiolabeling the affinity chromatography-purified enzyme with [14C]iodoacetate before subjecting to SDS-PAGE, the sulfhydryl oxidase band was identified, because sulfhydryl oxidase is known to be inactivated by alkylation of one sulfhydryl group per mole. The results confirmed that sulfhydryl oxidase corresponds to the 85 (+/- 5)-k-Daband observed on SDS-PAGE. The protein band corresponding to radiolabeled sulfhydryl oxidase was recovered from SDS-PAGE gels by electrophoretic elution and by electroblotting on polyvinylidene difluoride membrane and polyvinylidene difluoride membrane and subjected to gas phase sequencing. Precautions were taken during electrophoretic elution to prevent reactions that result in N-terminal blocking. Both methods of protein recovery yielded negative results when subjected to sequence analysis indicating that the N-terminus of sulfhydryl oxidase is blocked.
采用半胱氨酰琥珀酰胺丙基玻璃作为基质,通过对超滤乳清进行瞬时共价亲和层析,从牛乳中分离出适合测序的纯巯基氧化酶。用SDS-PAGE分离谷胱甘肽洗脱的蛋白质。在进行SDS-PAGE之前,用[14C]碘乙酸对亲和层析纯化的酶进行放射性标记,从而鉴定出巯基氧化酶条带,因为已知每摩尔巯基氧化酶通过一个巯基的烷基化而失活。结果证实,巯基氧化酶对应于在SDS-PAGE上观察到的85(±5)kD条带。通过电泳洗脱以及在聚偏二氟乙烯膜上进行电印迹,从SDS-PAGE凝胶中回收与放射性标记的巯基氧化酶相对应的蛋白条带,并对其进行气相测序。在电泳洗脱过程中采取了预防措施,以防止导致N端封闭的反应。对两种蛋白质回收方法进行序列分析时均得到阴性结果,表明巯基氧化酶的N端被封闭。