Nie G, Reading N S, Aust S D
Biotechnology Center, Utah State University, Logan, Utah, 84322-4705, USA.
Arch Biochem Biophys. 1999 May 15;365(2):328-34. doi: 10.1006/abbi.1999.1180.
Two types of glycosylated peroxidases are secreted by the white-rot fungus Phanerochaete chrysosporium, lignin peroxidase (LiP) and manganese peroxidase (MnP). The thermal stabilities of recombinant LiPH2, LiPH8, and MnPH4, which were expressed without glycosylation in Escherichia coli, were lower than those of corresponding native peroxidases isolated from P. chrysosporium. Recovery of thermally inactivated recombinant enzyme activities was higher than with that of the thermally inactivated native peroxidases. Removal of N-linked glycans from native LiPH8 and MnPH4 did not affect enzyme activities or thermal stabilities of the enzymes. Although LiPH2, LiPH8, and MnPH4 contained O-linked glycans, only the O-linked glycans from MnPH4 could be removed by O-glycosidase, and the glycan-depleted MnPH4 exhibited essentially the same activity as nondeglycosylated MnPH4, but thermal stability decreased. Periodate-treated MnPH4 exhibited even lower thermal stability than O-glycosidase treated MnPH4. The role of O-linked glycans in protein stability was also evidenced with LiPH2 and LiPH8. Based on these data, we propose that neither N- nor O-linked glycans are likely to have a direct role in enzyme activity of native LiPH2, LiPH8, and MnPH4 and that only O-linked glycans may play a crucial role in protein stability of native peroxidases.
白腐真菌黄孢原毛平革菌分泌两种类型的糖基化过氧化物酶,即木质素过氧化物酶(LiP)和锰过氧化物酶(MnP)。在大肠杆菌中未进行糖基化表达的重组LiPH2、LiPH8和MnPH4的热稳定性低于从黄孢原毛平革菌中分离得到的相应天然过氧化物酶。热失活的重组酶活性的恢复率高于热失活的天然过氧化物酶。从天然LiPH8和MnPH4中去除N-连接聚糖不会影响酶的活性或热稳定性。虽然LiPH2、LiPH8和MnPH4含有O-连接聚糖,但只有MnPH4的O-连接聚糖可以被O-糖苷酶去除,去糖基化的MnPH4表现出与未去糖基化的MnPH4基本相同的活性,但热稳定性降低。高碘酸盐处理的MnPH4表现出比O-糖苷酶处理的MnPH4更低的热稳定性。LiPH2和LiPH8也证明了O-连接聚糖在蛋白质稳定性中的作用。基于这些数据,我们提出N-连接和O-连接聚糖都不太可能对天然LiPH2、LiPH8和MnPH4的酶活性有直接作用,并且只有O-连接聚糖可能在天然过氧化物酶的蛋白质稳定性中起关键作用。