Yamagata S, Takeshima K, Naiki N
J Biochem. 1975 May;77(5):1029-36. doi: 10.1093/oxfordjournals.jbchem.a130803.
The nutritional requirements of three yeast mutants, previously shown to possess low O-acetyl-L-serine (OAS) and O-acetyl-L-homoserine (OAH) sulfhydrylase activities, were reinvestigated. It was thus found that one mutant (strain No. 16), previously identified as a homocysteine auxotroph, is in fact a double mutant requiring both cysteine and OAH. In agreement with the previous assignment, the other two strains (strains No. 13 and 17) were shown to be true cysteine auxotrophs. These results can best be explained by assuming the cystathionine pathway to be the main route of homocysteine synthesis in this organism. It was further found that extracts of the three mutants contain genetically modified OAS-OAH sulfhydrylases with much reduced catalytic activities. Modified sulfhydrylase was partially purified from strain No. 16 by the same procedure as for the wild-type enzyme. Both OAS and OAH sulfhydrylase activities of the mutant enzyme were copurified and behaved identically on polyacrylamide gel electrophoresis. The enzymatic and physicochemical properties of the purified mutant enzyme were shown to be very similar to those of the wild-type enzyme, except that the catalytic activities of the former were only 3-5% of those of the latter, and that the ratio of OAH sulfhydrylase to OAS sulfhydrylase activity was somewhat lower in the former than in the latter.
对先前已证明具有低O - 乙酰 - L - 丝氨酸(OAS)和O - 乙酰 - L - 高丝氨酸(OAH)巯基酶活性的三种酵母突变体的营养需求进行了重新研究。结果发现,一个先前被鉴定为高半胱氨酸营养缺陷型的突变体(16号菌株)实际上是一个双重突变体,既需要半胱氨酸又需要OAH。与先前的鉴定一致,另外两个菌株(13号和17号菌株)被证明是真正的半胱氨酸营养缺陷型。这些结果最好通过假设胱硫醚途径是该生物体中高半胱氨酸合成的主要途径来解释。进一步发现,这三种突变体的提取物含有催化活性大大降低的经基因修饰的OAS - OAH巯基酶。通过与野生型酶相同的程序从16号菌株中部分纯化了修饰的巯基酶。突变体酶的OAS和OAH巯基酶活性一起被纯化,并且在聚丙烯酰胺凝胶电泳上表现相同。已证明纯化的突变体酶的酶学和物理化学性质与野生型酶非常相似,只是前者的催化活性仅为后者的3 - 5%,并且前者中OAH巯基酶与OAS巯基酶活性的比率略低于后者。