Hayes J D, Clarkson G H
Biochem J. 1982 Dec 1;207(3):459-70. doi: 10.1042/bj2070459.
Rat liver glutathione S-transferases have previously been defined by their elution behaviour from DEAE-cellulose and CM-cellulose as M, E, D, C, B, A and AA. These enzymes are dimeric proteins which comprise subunits of mol.wt. 22 000 (Ya), 23 500 (Yb) or 25 000 (Yc). Evidence is presented that YaYa protein, one of two previously described lithocholate-binding proteins which exhibit transferase activity, is an additional enzyme which is not included in the M, E, D, C, B, A and AA nomenclature. We therefore propose that this enzyme is designated transferase YaYa. Transferases YaYa, C, A and AA have molecular weights of 44 000, 47 000, 47 000 and 50 000 respectively and each comprises two subunits of identical size. These enzymes were purified to allow a study of their structural and functional relationships. In addition, transferase A was further resolved into three forms (A1, A2 and A3) which possess identical activities and structures and appear to be the product of a single gene. Transferases YaYa, C, A and AA each had distinct enzymic properties and were inhibited by cholate. The recently proposed proteolytic model, which attributes the presence of multiple forms of glutathione S-transferase activity to partial proteolysis of transferase AA, was tested and shown to be highly improbable. Peptide maps showed significant differences between transferases YaYa, C, A and AA. Immunotitration studies demonstrated that antisera raised against transferases YaYa and C did not precipitate transferase AA.
大鼠肝脏谷胱甘肽S-转移酶先前已根据它们在DEAE-纤维素和CM-纤维素上的洗脱行为定义为M、E、D、C、B、A和AA。这些酶是二聚体蛋白质,由分子量为22000(Ya)、23500(Yb)或25000(Yc)的亚基组成。有证据表明,YaYa蛋白是先前描述的两种具有转移酶活性的石胆酸结合蛋白之一,是一种未包含在M、E、D、C、B、A和AA命名法中的额外酶。因此,我们建议将该酶命名为转移酶YaYa。转移酶YaYa、C、A和AA的分子量分别为44000、47000、47000和50000,且每种都由两个大小相同的亚基组成。对这些酶进行了纯化,以便研究它们的结构和功能关系。此外,转移酶A进一步解析为三种形式(A1、A2和A3),它们具有相同的活性和结构,似乎是单个基因的产物。转移酶YaYa、C、A和AA各自具有独特的酶学性质,并被胆酸盐抑制。对最近提出的蛋白水解模型进行了测试,该模型将谷胱甘肽S-转移酶活性的多种形式归因于转移酶AA的部分蛋白水解,结果表明该模型极不可能成立。肽图显示转移酶YaYa、C、A和AA之间存在显著差异。免疫滴定研究表明,针对转移酶YaYa和C产生的抗血清不会沉淀转移酶AA。