Traving C, Schauer R, Roggentin P
Biochemisches Institut der Christian-Albrechts-Universität, Kiel.
Glycoconj J. 1994 Apr;11(2):141-51. doi: 10.1007/BF00731154.
Clostridium perfringens possesses two sialidase isoenzymes of different molecular weight. Almost 90% of the gene encoding the 'large' form was found on a 3.1 kb chromosomal fragment (Sau3AI) of strain A99 by hybridization with probes developed from the N-terminal protein sequence and from commonly conserved sialidase motifs ('Asp-boxes'), whereas the remaining 3'-terminal part was detected on a 2.1 kb fragment (Hind III) of chromosomal DNA. After combination of both fragments, the resulting E. coli clones expressed sialidase activity, the properties of the recombinant sialidase corresponding with those of the wild type enzyme. The entire chromosomal fragment of 3665 bp encompasses the complete sialidase gene of 2082 bp corresponding to 694 amino acids, from which a molecular weight of 72,956 for the mature protein can be deduced. The first 41 amino acids are mostly hydrophobic and probably represent a signal peptide. The sialidase structural gene follows a non-coding region with an inverted repeat and a ribosome-binding site. Upstream from the regulatory region, another open reading frame (ORF) was detected. The 3'-terminus of the sialidase structural gene is directly followed by a further ORF of unknown function, which possibly encodes a putative permease or the acylneuraminate pyruvate-lyase involved in sialic acid catabolism. The primary structure of the 'large' isoenzyme is very similar to the sialidase of Clostridium septicum (55% identical amino acids), whereas the homology with the 'small' form of the same species is comparatively low (26%).
产气荚膜梭菌拥有两种分子量不同的唾液酸酶同工酶。通过与从N端蛋白质序列和常见保守唾液酸酶基序(“天冬氨酸盒”)开发的探针杂交,在菌株A99的3.1 kb染色体片段(Sau3AI)上发现了编码“大”形式的基因的近90%,而其余的3'末端部分在染色体DNA的2.1 kb片段(Hind III)上检测到。将两个片段组合后,所得的大肠杆菌克隆表达唾液酸酶活性,重组唾液酸酶的特性与野生型酶的特性相符。3665 bp的整个染色体片段包含2082 bp的完整唾液酸酶基因,对应于694个氨基酸,由此可以推断成熟蛋白的分子量为72956。前41个氨基酸大多是疏水的,可能代表信号肽。唾液酸酶结构基因后面是一个带有反向重复和核糖体结合位点的非编码区。在调控区上游,检测到另一个开放阅读框(ORF)。唾液酸酶结构基因的3'末端紧接着一个功能未知的ORF,它可能编码一种假定的通透酶或参与唾液酸分解代谢的酰基神经氨酸丙酮酸裂解酶。“大”同工酶的一级结构与败血梭菌的唾液酸酶非常相似(55%的氨基酸相同),而与同一物种的“小”形式的同源性相对较低(26%)。