Tiralongo Evelin, Schrader Silke, Lange Hans, Lemke Hilmar, Tiralongo Joe, Schauer Roland
Biochemisches Institut, Universität zu Kiel, Olshausenstrasse 40, Kiel 24098 Germany.
J Biol Chem. 2003 Jun 27;278(26):23301-10. doi: 10.1074/jbc.M212909200. Epub 2003 Mar 20.
Trypanosomes express an enzyme called trans-sialidase (TS), which enables the parasites to transfer sialic acids from the environment onto trypanosomal surface molecules. Here we describe the purification and characterization of two TS forms from the African trypanosome Trypanosoma congolense. The purification of the two TS forms using a combination of anion exchange chromatography, isoelectric focusing, gel filtration, and subsequently, antibody affinity chromatography resulted, in both cases, in the isolation of a 90-kDa monomer on SDS-PAGE, which was identified as trans-sialidase using micro-sequencing. Monoclonal antibody 7/23, which bound and partially inhibited TS activity, was found in both cases to bind to a 90-kDa protein. Both TS forms possessed sialidase and transfer activity, but markedly differed in their activity ratios. The TS form with a high transfer-to-sialidase activity ratio, referred to as TS-form 1, possessed a pI of pH 4-5 and a molecular mass of 350-600 kDa. In contrast, the form with a low transfer-to-sialidase activity ratio, referred to as TS-form 2, exhibited a pI of pH 5-6.5 and a molecular mass of 130-180 kDa. Both TS forms were not significantly inhibited by known sialidase inhibitors and revealed no significant differences in donor and acceptor substrate specificities; however, TS-form 1 utilized various acceptor substrates with a higher catalytic efficiency. Interestingly, glutamic acid-alanine-rich protein, the surface glycoprotein, was co-purified with TS-form 1 suggesting an association between both proteins.
锥虫表达一种名为转唾液酸酶(TS)的酶,该酶使寄生虫能够将环境中的唾液酸转移到锥虫表面分子上。在此,我们描述了从非洲锥虫刚果锥虫中纯化和鉴定两种TS形式的过程。使用阴离子交换色谱、等电聚焦、凝胶过滤,随后进行抗体亲和色谱的组合方法纯化这两种TS形式,在两种情况下,SDS-PAGE上均分离出一种90 kDa的单体,通过微量测序鉴定为转唾液酸酶。发现两种情况下都能结合并部分抑制TS活性的单克隆抗体7/23与一种90 kDa的蛋白质结合。两种TS形式都具有唾液酸酶和转移活性,但它们的活性比率明显不同。具有高转移/唾液酸酶活性比率的TS形式,称为TS形式1,其pI为pH 4 - 5,分子量为350 - 600 kDa。相比之下,具有低转移/唾液酸酶活性比率的形式,称为TS形式2,其pI为pH 5 - 6.5,分子量为130 - 180 kDa。两种TS形式均未被已知的唾液酸酶抑制剂显著抑制,并且在供体和受体底物特异性方面没有显著差异;然而,TS形式1利用各种受体底物时具有更高的催化效率。有趣的是,富含谷氨酸-丙氨酸的表面糖蛋白与TS形式1共同纯化,表明这两种蛋白质之间存在关联。