Henningsen M, Roggentin P, Schauer R
Biochemisches Institut, Universität zu Kiel.
Biol Chem Hoppe Seyler. 1991 Dec;372(12):1065-72. doi: 10.1515/bchm3.1991.372.2.1065.
Chromosomal DNA from Actinomyces viscosus was digested with restriction endonucleases and the fragments ligated with pUC-vectors were used to transform Escherichia coli cells. Clones bearing the required sialidase gene were detected by spraying the colonies with the fluorogenic sialidase substrate MU-Neu5Ac. The identity of the cloned sialidase was confirmed after the 5700-fold enrichment and comparison with the purified enzyme of A. viscosus. Both sialidases were identical with regard to molecular mass, substrate specificity tested with sialyllactoses, and the inhibition of their activity by heterologous antisialidase antibodies. The sequenced insert (EMBL accession number X62276) revealed a mol% G + C of 68.2, typical for A. viscosus. An open reading frame of 2739 bp follows a sequence with dyad symmetry and an AG-rich region, and codes for 913 amino acids representing a molecular mass of 113 kDa. The conserved amino acid sequence [Ser-X-Asp-X-Gly-X-Thr-Trp] typical for bacterial sialidases was found at five positions in the predicted amino acid sequence. The gene of this enzyme is expressed by E. coli, despite the low relatedness of both species.
用限制性内切酶消化粘性放线菌的染色体DNA,将与pUC载体连接的片段用于转化大肠杆菌细胞。通过用荧光性唾液酸酶底物MU-Neu5Ac喷洒菌落来检测携带所需唾液酸酶基因的克隆。在经过5700倍富集并与粘性放线菌的纯化酶进行比较后,确认了克隆唾液酸酶的身份。两种唾液酸酶在分子量、用唾液乳糖测试的底物特异性以及它们的活性被异源抗唾液酸酶抗体抑制方面均相同。测序的插入片段(EMBL登录号X62276)显示G + C摩尔百分比为68.2,这是粘性放线菌的典型特征。一个2739 bp的开放阅读框位于具有二元对称性和富含AG区域的序列之后,编码913个氨基酸,分子量为113 kDa。在预测的氨基酸序列中的五个位置发现了细菌唾液酸酶典型的保守氨基酸序列[Ser-X-Asp-X-Gly-X-Thr-Trp]。尽管这两个物种的亲缘关系较低,但该酶的基因在大肠杆菌中仍可表达。