Erickson A H, Blobel G
Biochemistry. 1983 Oct 25;22(22):5201-5. doi: 10.1021/bi00291a021.
During pulse-chase experiments in cultured porcine kidney cells, an early 75-kilodalton (kDa) form of beta-glucuronidase is converted to a late 72-kDa form. The relative molecular weight difference between the two forms is maintained on removal of high-mannose carbohydrate with endoglycosidase H. Both forms have the same partial NH2-terminal sequence, and both migrate as single polypeptide chains following reduction, alkylation, and electrophoresis under denaturing conditions. On treatment with carboxypeptidase Y, the early form released [35S]Met faster than the late form. Thus, the late form of beta-glucuronidase is generated by COOH-terminal proteolytic processing of the early form. During similar experiments, the mass of the 30-kDa heavy chain of porcine cathepsin D decreased by about 1 kDa. The heavy chain of the two-chain enzyme is derived from the COOH terminus of a 44-kDa single-chain enzyme. On treatment with carboxypeptidase Y, the early single-chain enzyme released COOH-terminal [35S]Met and [3H]Lys faster than the later 29-kDa heavy chain. Like beta-glucuronidase, cathepsin D evidently undergoes COOH-terminal proteolytic processing during biosynthesis.
在培养的猪肾细胞中进行脉冲追踪实验时,β-葡萄糖醛酸酶的早期75千道尔顿(kDa)形式会转变为晚期72-kDa形式。用内切糖苷酶H去除高甘露糖碳水化合物后,这两种形式之间的相对分子量差异得以保持。两种形式具有相同的部分NH2末端序列,并且在变性条件下进行还原、烷基化和电泳后,均以单条多肽链的形式迁移。用羧肽酶Y处理时,早期形式比晚期形式更快地释放出[35S]甲硫氨酸。因此,β-葡萄糖醛酸酶的晚期形式是通过早期形式的COOH末端蛋白水解加工产生的。在类似实验中,猪组织蛋白酶D的30-kDa重链质量减少了约1 kDa。双链酶的重链源自44-kDa单链酶的COOH末端。用羧肽酶Y处理时,早期单链酶比后来的29-kDa重链更快地释放出COOH末端的[35S]甲硫氨酸和[3H]赖氨酸。与β-葡萄糖醛酸酶一样,组织蛋白酶D在生物合成过程中显然也经历了COOH末端的蛋白水解加工。