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首页> 外文期刊>The Biochemical Journal >Domain mapping on the human metastasis regulator protein h-Prune reveals a C-terminal dimerization domain
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Domain mapping on the human metastasis regulator protein h-Prune reveals a C-terminal dimerization domain

机译:人类转移调节蛋白h-Prune上的结构域图揭示了C端二聚化结构域

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摘要

The human orthologue of the Drosophila prune protein (h-Prune) is an interaction partner and regulator of the metastasis suppressor protein NM23-H1 (non-metastatic protein 23). Studies on a cellular breast-cancer model showed that inhibition of the cAMP-specific PDE (phosphodiesterase) activity of h-Prune lowered the incidence of metastasis formation, suggesting that inhibition of h-Prune could be a therapeutic approach towards metastatic tumours. H-Prune shows no sequence similarity with known mammalian PDEs, but instead appears to belong to the DHH (Asp-His-His) superfamily of phosphoesterases. In order to investigate the structure and molecular function of h-Prune, we expressed recombinant h-Prune in a bacterial system. Through sequence analysis and limited proteolysis, we identified domain boundaries and a potential coiled-coil region in a C-terminal cortexillin homology domain. We found that this C-terminal domain mediated h-Prune homodimerization, as well as its interaction with NM23-H1. The PDE catalytic domain of h-Prune was mapped to the N-terminus and shown to be active, even when present in a monomeric form. Our findings indicate that h-Prune is composed of two independent active sites and two interaction sites for the assembly of oligomeric signalling complexes.
机译:果蝇李蛋白(h-Prune)的人类直系同源物是转移抑制蛋白NM23-H1(非转移蛋白23)的相互作用伴侣和调节剂。对细胞乳腺癌模型的研究表明,抑制h-Prune的cAMP特异性PDE(磷酸二酯酶)活性可降低转移形成的发生率,这表明抑制h-Prune可能是治疗转移性肿瘤的一种治疗方法。 H-Prune与已知的哺乳动物PDE没有序列相似性,而是似乎属于磷酸酯酶的DHH(Asp-His-His)超家族。为了研究h-Prune的结构和分子功能,我们在细菌系统中表达了重组h-Prune。通过序列分析和有限的蛋白水解,我们确定了C-末端皮质醇同源域中的域边界和潜在的卷曲螺旋区域。我们发现,此C末端域介导的h-Prune同型二聚化,以及其与NM23-H1的相互作用。 h-Prune的PDE催化结构域被定位到N端,即使以单体形式存在也显示出活性。我们的发现表明,h-Prune由两个独立的活性位点和两个相互作用位点组成,用于寡聚信号复合物的组装。

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