Department of Biochemistry, New York University School of Medicine, New York, NY 10016, USA.
Biochem Biophys Res Commun. 2010 Jan 1;391(1):340-5. doi: 10.1016/j.bbrc.2009.11.060. Epub 2009 Nov 12.
We report here the high-resolution atomic structures of GAP31 crystallized in the presence of HIV-LTR DNA oligonucleotides systematically designed to examine the adenosine glycosidase activity of this anti-HIV and anti-tumor plant protein. Structural analysis and molecular modeling lead to several novel findings. First, adenine is bound at the active site in the crystal structures of GAP31 to HIV-LTR duplex DNA with 5' overhanging adenosine ends, such as the 3'-processed HIV-LTR DNA but not to DNA duplex with blunt ends. Second, the active site pocket of GAP31 is ideally suited to accommodate the 5' overhanging adenosine of the 3'-processed HIV-LTR DNA and the active site residues are positioned to perform the adenosine glycosidase activity. Third, GAP31 also removes the 5'-end adenine from single-stranded HIV-LTR DNA oligonucleotide as well as any exposed adenosine, including that of single nucleotide dAMP but not from AMP. Fourth, GAP31 does not de-purinate guanosine from di-nucleotide GT. These results suggest that GAP31 has DNA adenosine glycosidase activity against accessible adenosine. This activity is distinct from the generally known RNA N-glycosidase activity toward the 28S rRNA. It may be an alternative function that contributes to the antiviral and anti-tumor activities of GAP31. These results provide molecular insights consistent with the anti-HIV mechanisms of GAP31 in its inhibition on the integration of viral DNA into the host genome by HIV-integrase as well as irreversible topological relaxation of the supercoiled viral DNA.
我们报告了在这里高分辨率的原子结构的 GAP31 结晶存在的情况下,艾滋病毒 - LTR DNA 寡核苷酸系统地设计来检查腺苷糖苷酶活性的这种抗艾滋病毒和抗肿瘤植物蛋白。结构分析和分子建模导致了一些新的发现。首先,腺嘌呤是结合在活性部位的晶体结构的 GAP31 对艾滋病毒 - LTR 双链 DNA 与 5'突出腺嘌呤结束,如 3 '-加工的 HIV - LTR DNA ,而不是 DNA 双链与钝结束。其次,活性部位的口袋 GAP31 是非常适合容纳 5 '突出腺嘌呤的 3 '-加工的 HIV - LTR DNA 和活性部位残基定位执行腺嘌呤糖苷酶活性。第三,GAP31 也去除 5 '-端腺嘌呤从单链 HIV - LTR DNA 寡核苷酸以及任何暴露的腺嘌呤,包括单核苷酸 dAMP ,但不是从 AMP 。第四,GAP31 不脱嘌呤鸟苷从二核苷酸 GT 。这些结果表明,GAP31 有 DNA 腺嘌呤糖苷酶活性对可及腺嘌呤。这种活性是从一般已知的 RNA N -糖苷酶活性对 28S rRNA 。它可能是一个替代的功能,有助于抗病毒和抗肿瘤活性的 GAP31 。这些结果提供了分子见解与抗 HIV 机制的 GAP31 在其抑制整合病毒 DNA 到宿主基因组的 HIV -整合酶以及不可逆拓扑弛豫的超螺旋病毒 DNA 。