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Crystal structure of the APOBEC3G catalytic domain reveals potential oligomerization interfaces.

机译:apOBEC3G催化结构域的晶体结构揭示了潜在的寡聚化界面。

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摘要

APOBEC3G is a DNA cytidine deaminase that has antiviral activity against HIV-1 and other pathogenic viruses. In this study the crystal structure of the catalytically active C-terminal domain was determined to 2.25 A. This structure corroborates features previously observed in nuclear magnetic resonance (NMR) studies, a bulge in the second beta strand and a lengthening of the second alpha helix. Oligomerization is postulated to be critical for the function of APOBEC3G. In this structure, four extensive intermolecular interfaces are observed, suggesting potential models for APOBEC3G oligomerization. The structural and functional significance of these interfaces was probed by solution NMR and disruptive variants were designed and tested for DNA deaminase and anti-HIV activities. The variant designed to disrupt the most extensive interface lost both activities. NMR solution data provides evidence that another interface, which coordinates a novel zinc site, also exists. Thus, the observed crystallographic interfaces of APOBEC3G may be important for both oligomerization and function.
机译:APOBEC3G是一种DNA胞苷脱氨酶,对HIV-1和其他病原性病毒具有抗病毒活性。在这项研究中,催化活性C端结构域的晶体结构确定为2.25A。该结构证实了先前在核磁共振(NMR)研究中观察到的特征,第二个β链中的凸起和第二个α螺旋的延长。假定低聚化对于APOBEC3G的功能至关重要。在这种结构中,观察到四个广泛的分子间界面,提示了APOBEC3G低聚的潜在模型。这些界面的结构和功能意义通过溶液NMR进行了探测,并设计了破坏性变异体并测试了DNA脱氨酶和抗HIV活性。旨在破坏最广泛接口的变体丢失了这两个活动。 NMR溶液数据提供了证据,表明还存在另一个介导新的锌位点的界面。因此,观察到的APOBEC3G的晶体界面对于低聚和功能都可能很重要。

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