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首页> 外文期刊>The Biochemical Journal >Homodimerization and hetero-oligomerization of the single-domain trefoil protein pNR-2/pS2 through cysteine 58.
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Homodimerization and hetero-oligomerization of the single-domain trefoil protein pNR-2/pS2 through cysteine 58.

机译:单域三叶蛋白pNR-2 / pS2通过半胱氨酸58的均质化和杂聚。

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摘要

The single-domain human trefoil proteins [pNR-2/pS2 and human intestinal trefoil factor (hITF)] have seven cysteine residues, of which six are involved in maintaining the structure of the trefoil domain. The seventh does not form part of the trefoil domain and is located three residues from the C-terminus. The ability of the pNR-2/pS2 single trefoil domain protein to dimerize was examined by using recombinant protein with either a cysteine or a serine residue at this position by equilibrium ultracentrifugation, laser-assisted desorption MS, gel filtration and PAGE. pNR-2/pS2 Cys58 formed dimers, whereas pNR-2/pS2 Ser58 did not. Experiments in which the dimer was treated with thiol agents demonstrated that the dimer was linked via a disulphide bond and that the intermolecular disulphide bond was more susceptible to reduction than the intramolecular disulphide bonds. To examine whether dimeric pNR-2/pS2 was secreted by oestrogen-responsive breast cancer cells, which are known to express pNR-2/pS2 mRNA, conditioned medium was separated on non-denaturing polyacrylamide gels, transferred to PVDF membrane and reacted with antiserum against pNR-2/pS2. Monomeric and dimeric pNR-2/pS2 were detected but the majority of the protein reactivity was associated with a larger protein. Treatment of this protein with thiol agents suggested that it is an oligomer containing pNR-2/pS2 linked to another protein by a disulphide bond. These studies suggest that the biological action of pNR-2/pS2 single-domain trefoil protein might involve the formation of homodimers or oligomers with other proteins.
机译:单域人三叶蛋白[pNR-2 / pS2和人肠三叶因子(hITF)]具有七个半胱氨酸残基,其中六个与维持三叶结构域有关。第七个不构成三叶结构域的一部分,位于C端三个残基上。通过使用平衡超速离心,激光辅助解吸MS,凝胶过滤和PAGE,使用在该位置带有半胱氨酸或丝氨酸残基的重组蛋白,检查了pNR-2 / pS2单三叶结构域蛋白的二聚能力。 pNR-2 / pS2 Cys58形成二聚体,而pNR-2 / pS2 Ser58没有。用硫醇试剂处理二聚体的实验表明,二聚体通过二硫键连接,并且分子间二硫键比分子内二硫键更易还原。为了检查已知表达pNR-2 / pS2 mRNA的雌激素反应性乳腺癌细胞是否分泌了二聚体pNR-2 / pS2,将条件培养基在非变性聚丙烯酰胺凝胶上分离,转移至PVDF膜上并与抗血清反应针对pNR-2 / pS2。检测到单体和二聚体pNR-2 / pS2,但大多数蛋白反应性与更大的蛋白有关。用硫醇试剂处理这种蛋白质表明,它是一种含有通过二硫键与另一种蛋白质连接的pNR-2 / pS2的低聚物。这些研究表明,pNR-2 / pS2单域三叶蛋白的生物学作用可能涉及与其他蛋白形成同型二聚体或寡聚体。

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