Li Ai-Hua, Na Byoung-Kuk, Kong Yoon, Cho Shin-Hyeong, Zhao Qin-Ping, Kim Tong-Soo
Department of Tropical and Endemic Parasitic Diseases, National Institute of Health, Seoul 122-701, Korea.
J Parasitol. 2005 Apr;91(2):293-9. doi: 10.1645/GE-349R.
Superoxide dismutases (SODs; EC 1.15.1.1) play important roles in the protection of the parasites against cellular oxygen-mediated killing of the hosts. A copper/zinc-containing SOD (Cu/Zn-SOD) was identified previously from lung fluke, Paragonimus westermani. To expand our understanding of P. westermani SOD, we isolated a complementary DNA encoding a Cu/Zn-SOD, expressed the active enzyme in Escherichia coli, and characterized its biochemical properties. The deduced amino acid (aa) sequence of the gene shared up to 73.7% identities with Cu/Zn-SODs of other helminths and shared well-conserved characteristic motifs and essential aa residues involved in coordinating copper and zinc enzymatic functions. Recombinant Cu/ Zn-SOD exhibited comparable biochemical properties with that of the native enzyme, including pH optima and potassium cyanide-and hydrogen peroxide-sensitive inhibition profiles. The active enzyme consisted of 2 identical subunits covalently linked by disulfide bonds. The enzyme was constitutively expressed throughout various developmental stages of the parasite. The levels increased as P. westermani matured and plateaued in adult stage. Our result suggests the enzyme might play an important role for parasites to survive in the hosts through its superoxide anion-detoxifying function.
超氧化物歧化酶(SODs;EC 1.15.1.1)在保护寄生虫免受宿主细胞氧介导杀伤方面发挥着重要作用。先前已从卫氏并殖吸虫中鉴定出一种含铜/锌的SOD(Cu/Zn-SOD)。为了进一步了解卫氏并殖吸虫SOD,我们分离了一个编码Cu/Zn-SOD的互补DNA,在大肠杆菌中表达了活性酶,并对其生化特性进行了表征。该基因推导的氨基酸(aa)序列与其他蠕虫的Cu/Zn-SOD具有高达73.7%的同一性,并且具有保守的特征基序和参与铜和锌酶功能配位的必需aa残基。重组Cu/Zn-SOD表现出与天然酶相当的生化特性,包括最适pH值以及对氰化钾和过氧化氢敏感的抑制谱。活性酶由通过二硫键共价连接的2个相同亚基组成。该酶在寄生虫的各个发育阶段均组成性表达。随着卫氏并殖吸虫成熟,其水平升高,并在成虫阶段趋于稳定。我们的结果表明,该酶可能通过其超氧阴离子解毒功能在寄生虫在宿主体内存活中发挥重要作用。