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Novel dimeric structure of phage phi 29-encoded protein p56: insights into uracil-DNA glycosylase inhibition

机译:噬菌体phi 29编码蛋白p56的新型二聚体结构:尿嘧啶DNA糖基化酶抑制作用的见解

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摘要

Protein p56 encoded by the Bacillus subtilis phage phi 29 inhibits the host uracil-DNA glycosylase (UDG) activity. To get insights into the structural basis for this inhibition, the NMR solution structure of p56 has been determined. The inhibitor defines a novel dimeric fold, stabilized by a combination of polar and extensive hydrophobic interactions. Each polypeptide chain contains three stretches of anti-parallel beta-sheets and a helical region linked by three short loops. In addition, microcalorimetry titration experiments showed that it forms a tight 2:1 complex with UDG, strongly suggesting that the dimer represents the functional form of the inhibitor. This was further confirmed by the functional analysis of p56 mutants unable to assemble into dimers. We have also shown that the highly anionic region of the inhibitor plays a significant role in the inhibition of UDG. Thus, based on these findings and taking into account previous results that revealed similarities between the association mode of p56 and the phage PBS-1/PBS-2-encoded inhibitor Ugi with UDG, we propose that protein p56 might inhibit the enzyme by mimicking its DNA substrate.
机译:枯草芽孢杆菌噬菌体phi 29编码的蛋白p56抑制宿主尿嘧啶DNA糖基化酶(UDG)活性。为了深入了解这种抑制作用的结构基础,已经确定了p56的NMR溶液结构。该抑制剂定义了新的二聚体折叠,其通过极性和广泛的疏水相互作用的组合而稳定。每条多肽链包含三段反平行的β-折叠和一个由三个短环连接的螺旋区域。此外,微量量热法滴定实验表明它与UDG形成紧密的2:1络合物,强烈表明二聚体代表抑制剂的功能形式。 p56突变体无法装配成二聚体的功能分析进一步证实了这一点。我们还表明,抑制剂的高度阴离子区域在抑制UDG中起着重要作用。因此,基于这些发现并考虑到先前的结果,揭示了p56与噬菌体PBS-1 / PBS-2编码的抑制剂Ugi与UDG的缔合模式之间的相似性,我们提出p56蛋白可能通过模仿其蛋白来抑制该酶。 DNA底物。

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