首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >X-ray crystallographic analysis of the structural basis for the interactions of pokeweed antiviral protein with its active site inhibitor and ribosomal RNA substrate analogs.
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X-ray crystallographic analysis of the structural basis for the interactions of pokeweed antiviral protein with its active site inhibitor and ribosomal RNA substrate analogs.

机译:商陆抗病毒蛋白与其活性位点抑制剂和核糖体RNA底物类似物相互作用的结构基础的X射线晶体学分析。

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摘要

The pokeweed antiviral protein (PAP) belongs to a family of ribosome-inactivating proteins (RIP), which depurinate ribosomal RNA through their site-specific N-glycosidase activity. We report low temperature, three-dimensional structures of PAP co-crystallized with adenyl-guanosine (ApG) and adenyl-cytosine-cytosine (ApCpC). Crystal structures of 2.0-2.1 A resolution revealed that both ApG or ApCpC nucleotides are cleaved by PAP, leaving only the adenine base clearly visible in the active site pocket of PAP. ApCpC does not resemble any known natural substrate for any ribosome-inactivating proteins and its cleavage by PAP provides unprecedented evidence for a broad spectrum N-glycosidase activity of PAP toward adenine-containing single stranded RNA. We also report the analysis of a 2.1 A crystal structure of PAP complexed with the RIP inhibitor pteoric acid. The pterin ring is strongly bound in the active site, forming four hydrogen bonds with active site residues and one hydrogen bond with the coordinated water molecule. The second 180 degrees rotation conformation of pterin ring can form only three hydrogen bonds in the active site and is less energetically favorable. The benzoate moiety is parallel to the protein surface of PAP and forms only one hydrogen bond with the guanido group of Arg135.
机译:商陆抗病毒蛋白(PAP)属于核糖体失活蛋白(RIP)家族,它们通过其位点特异性N-糖苷酶活性使核糖体RNA脱嘌呤。我们报告低温,PAP的三维结构与腺苷-鸟苷(ApG)和腺苷-胞嘧啶-胞嘧啶(ApCpC)共结晶。分辨率为2.0-2.1 A的晶体结构表明,APG切割了ApG或ApCpC核苷酸,仅在PAP的活性位点口袋中清晰可见腺嘌呤碱基。 ApCpC与任何已知的天然核糖体失活蛋白都不相似,PAP对其的切割为PAP对含腺嘌呤的单链RNA的广谱N-糖苷酶活性提供了空前的证据。我们还报告了与RIP抑制剂磷酸复合的PAP 2.1 A晶体结构的分析。蝶呤环牢固地结合在活性位点上,与活性位点残基形成四个氢键,与配位的水分子形成一个氢键。蝶呤环的第二个180度旋转构象只能在活性位点形成三个氢键,在能量上不太有利。苯甲酸酯部分与PAP的蛋白质表面平行,并且仅与Arg135的胍基形成一个氢键。

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