Regulatory interactions between APOBEC3B N- and C-terminal domains.

Mac Kevin E Braza, Özlem Demir, Surl-Hee Ahn, Clare K Morris, Carla Calvó-Tusell, Kelly L McGuire, Bárbara de la Peña Avalos, Michael A Carpenter, Yanjun Chen, Lorenzo Casalino, Hideki Aihara, Mark A Herzik, Reuben S Harris, Rommie E Amaro
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Abstract

APOBEC3B (A3B) is implicated in DNA mutations that facilitate tumor evolution. Although structures of its individual N- and C-terminal domains (NTD and CTD) have been resolved through X-ray crystallography, the full-length A3B (fl-A3B) structure remains elusive, limiting understanding of its dynamics and mechanisms. In particular, the APOBEC3B C-terminal domain (A3Bctd) active site is frequently closed in models and structures. In this study, we built several new models of fl-A3B using integrative structural biology methods and selected a top model for further dynamical investigation. We compared dynamics of the truncated (A3Bctd) to the fl-A3B via conventional and Gaussian accelerated molecular dynamics (MD) simulations. Subsequently, we employed weighted ensemble methods to explore the fl-A3B active site opening mechanism, finding that interactions at the NTD-CTD interface enhance the opening frequency of the fl-A3B active site. Our findings shed light on the structural dynamics of fl-A3B, which may offer new avenues for therapeutic intervention in cancer.

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APOBEC3B N-和c端结构域之间的调控相互作用。
APOBEC3B (A3B)与促进肿瘤进化的DNA突变有关。尽管其N端和c端结构域(NTD和CTD)的结构已经通过x射线晶体学得到了解析,但全长A3B (fl-A3B)的结构仍然难以捉摸,限制了对其动力学和机制的理解。特别是,APOBEC3B C-terminal domain (A3Bctd)活性位点在模型和结构中经常是封闭的。本研究采用综合结构生物学方法构建了多个新的fl-A3B模型,并选择了一个顶级模型进行进一步的动力学研究。我们通过常规和高斯加速分子动力学(MD)模拟比较了截断的(A3Bctd)和fl-A3B的动力学。随后,我们采用加权系综方法探究了fl-A3B活性位点的开启机制,发现NTD-CTD界面的相互作用增强了fl-A3B活性位点的开启频率。我们的发现揭示了fl-A3B的结构动力学,这可能为癌症的治疗干预提供新的途径。
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