首页> 美国卫生研究院文献>Biochemical Journal >Characterization of 3Hpalmitate- and 3Hethanolamine-labelled proteins in the multicellular parasitic trematode Schistosoma mansoni.
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Characterization of 3Hpalmitate- and 3Hethanolamine-labelled proteins in the multicellular parasitic trematode Schistosoma mansoni.

机译:表征3H棕榈酸酯和3H乙醇胺标记的蛋白质在多细胞寄生吸虫曼氏血吸虫中。

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摘要

Biosynthetic labelling experiments with cercariae and schistosomula of the multicellular parasitic trematode Schistosoma mansoni were performed to determine whether [3H]palmitate or [3H]ethanolamine was incorporated into proteins. Parasites incorporated [3H]palmitate into numerous proteins, as judged by SDS/polyacrylamide-gel electrophoresis and fluorography. The radiolabel was resistant to extraction with chloroform, but sensitive to alkaline hydrolysis, indicating the presence of an ester bond. Further investigation of the major 22 kDa [3H]palmitate-labelled species showed that the label could be recovered in a Pronase fragment which bound detergent and had an apparent molecular mass of 1200 Da as determined by gel filtration on Sephadex LH-20. Schistosomula incubated with [3H]ethanolamine for up to 24 h incorporated this precursor into several proteins; labelled Pronase fragments recovered from the three most intensely labelled proteins were hydrophilic and had a molecular mass of approx. 200 Da. Furthermore, reductive methylation of such fragments showed that the [3H]ethanolamine bears a free amino group, indicating the lack of an amide linkage. We also evaluated the effect of phosphatidylinositol-specific phospholipase C from Staphylococcus aureus: [3H]palmitate-labelled proteins of schistosomula and surface-iodinated proteins were resistant to hydrolysis with this enzyme. In conclusion, [3H]palmitate and [3H]ethanolamine are incorporated into distinct proteins of cercariae and schistosomula which do not bear glycophospholipid anchors. The [3H]ethanolamine-labelled proteins represent a novel variety of protein modification.
机译:进行了尾和血吸虫多细胞寄生吸虫曼氏血吸虫的生物合成标记实验,以确定[3H]棕榈酸酯或[3H]乙醇胺是否掺入蛋白质。通过SDS /聚丙烯酰胺凝胶电泳和荧光检查可以判断,寄生虫将[3H]掺入多种蛋白质中。放射性标记物耐氯仿萃取,但对碱水解敏感,表明存在酯键。对主要的22 kDa [3H]棕榈酸酯标记的物质进行的进一步研究表明,可以在结合洗涤剂的Pronase片段中回收该标记,并通过Sephadex LH-20凝胶过滤测定其表观分子量为1200 Da。血吸虫与[3H]乙醇胺孵育长达24小时后,将该前体掺入了几种蛋白质中。从三个标记最强的蛋白质中回收的标记的链霉蛋白酶片段具有亲水性,分子量约为。 200达此外,这些片段的还原性甲基化表明[3H]乙醇胺带有一个游离氨基,表明缺少酰胺键。我们还评估了来自金黄色葡萄球菌的磷脂酰肌醇特异性磷脂酶C的作用:[3H]棕榈酸酯标记的血吸虫蛋白和表面碘化的蛋白对该酶具有抗水解性。总之,[3H]棕榈酸酯和[3H]乙醇胺被掺入了尾and和血吸虫的不同蛋白中,这些蛋白不带有糖磷脂锚。 [3H]乙醇胺标记的蛋白质代表了多种新型的蛋白质修饰。

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