School of Life Sciences, University of Sussex, Falmer, Brighton BN1 9QG, United Kingdom.
Diamond Light Source, Harwell Science and Innovation Campus, Didcot OX11 0DE, United Kingdom.
Acta Crystallogr F Struct Biol Commun. 2021 Jul 1;77(Pt 7):202-207. doi: 10.1107/S2053230X21006506. Epub 2021 Jun 29.
Pivotal to the regulation of key cellular processes such as the transcription, replication and repair of DNA, DNA-binding proteins play vital roles in all aspects of genetic activity. The determination of high-quality structures of DNA-binding proteins, particularly those in complexes with DNA, provides crucial insights into the understanding of these processes. The presence in such complexes of phosphate-rich oligonucleotides offers the choice of a rapid method for the routine solution of DNA-binding proteins through the use of long-wavelength beamlines such as I23 at Diamond Light Source. This article reports the use of native intrinsic phosphorus and sulfur single-wavelength anomalous dispersion methods to solve the complex of the DNA-binding domain (DBD) of interferon regulatory factor 4 (IRF4) bound to its interferon-stimulated response element (ISRE). The structure unexpectedly shows three molecules of the IRF4 DBD bound to one ISRE. The sole reliance on native intrinsic anomalous scattering elements that belong to DNA-protein complexes renders the method of general applicability to a large number of such protein complexes that cannot be solved by molecular replacement or by other phasing methods.
DNA 结合蛋白在转录、复制和修复 DNA 等关键细胞过程的调节中起着至关重要的作用,它们在遗传活动的各个方面都发挥着重要作用。确定 DNA 结合蛋白的高质量结构,特别是与 DNA 结合的复合物的结构,为理解这些过程提供了关键的见解。在这些复合物中存在富含磷酸盐的寡核苷酸,为通过使用 Diamond Light Source 的 I23 等长波长光束线来常规解决 DNA 结合蛋白提供了选择。本文报道了使用天然本征磷和硫单波长异常散射方法来解决干扰素调节因子 4(IRF4)的 DNA 结合域(DBD)与干扰素刺激反应元件(ISRE)结合的复合物。该结构出人意料地显示出三个 IRF4 DBD 分子结合到一个 ISRE 上。该方法仅依赖于属于 DNA-蛋白复合物的天然本征异常散射元素,使其具有广泛的适用性,可以应用于大量无法通过分子置换或其他相位确定方法解决的此类蛋白复合物。