Light-dependent flavin redox and adduct states control the conformation and DNA-binding activity of the transcription factor EL222.

IF 13.1 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Nucleic Acids Research Pub Date : 2025-03-20 DOI:10.1093/nar/gkaf215
Aditya S Chaudhari, Adrien Favier, Zahra Aliakbar Tehrani, Tomáš Kovaľ, Inger Andersson, Bohdan Schneider, Jan Dohnálek, Jiří Černý, Bernhard Brutscher, Gustavo Fuertes
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Abstract

The activity of the light-oxygen-voltage/helix-turn-helix (LOV-HTH) photoreceptor EL222 is regulated through protein-protein and protein-DNA interactions, both triggered by photo-excitation of its flavin mononucleotide (FMN) cofactor. To gain molecular-level insight into the photocycle of EL222, we applied complementary methods: macromolecular X-ray crystallography (MX), nuclear magnetic resonance (NMR) spectroscopy, optical spectroscopies (infrared and UV-visible), molecular dynamics/metadynamics (MD/metaD) simulations, and protein engineering using noncanonical amino acids. Kinetic experiments provided evidence for two distinct EL222 conformations (lit1 and lit2) that become sequentially populated under illumination. These two lit states were assigned to covalently bound N5 protonated, and noncovalently bound hydroquinone forms of FMN, respectively. Only subtle structural differences were observed between the monomeric forms of all three EL222 species (dark, lit1, and lit2). While the dark state is largely monomeric, both lit states undergo monomer-dimer exchange. Furthermore, molecular modeling revealed differential dynamics and interdomain separation times arising from the three FMN states (oxidized, adduct, and reduced). Unexpectedly, all three EL222 species can associate with DNA, but only upon blue-light irradiation, a high population of stable complexes is obtained. Overall, we propose a model of EL222 activation where photoinduced changes in the FMN moiety shift the population equilibrium toward an open conformation that favors self-association and DNA-binding.

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光依赖性黄素氧化还原和加合物状态控制转录因子 EL222 的构象和 DNA 结合活性。
光-氧-电压/螺旋-旋转-螺旋(LOV-HTH)光感受器EL222的活性是通过蛋白-蛋白和蛋白- dna相互作用调节的,这两种相互作用都是由其黄素单核苷酸(FMN)辅因子的光激发引发的。为了在分子水平上深入了解EL222的光循环,我们采用了互补的方法:大分子x射线晶体学(MX)、核磁共振(NMR)光谱、光谱学(红外和紫外可见)、分子动力学/元动力学(MD/metaD)模拟和使用非规范氨基酸的蛋白质工程。动力学实验提供了两种不同的EL222构象(lit1和lit2)在光照下依次填充的证据。这两个亮态分别被分配给共价结合的N5质子化形式和非共价结合的对苯二酚形式的FMN。在所有三个EL222物种(dark、lit1和lit2)的单体形态之间仅观察到细微的结构差异。虽然暗态主要是单体,但两个亮态都经历了单体-二聚体交换。此外,分子模型揭示了三种FMN状态(氧化、加合和还原)的不同动力学和域间分离时间。出乎意料的是,所有三种EL222都可以与DNA结合,但只有在蓝光照射下,才能获得大量稳定的复合物。总的来说,我们提出了一个EL222激活模型,其中光诱导的FMN部分的变化将种群平衡转向有利于自结合和dna结合的开放构象。
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来源期刊
Nucleic Acids Research
Nucleic Acids Research 生物-生化与分子生物学
CiteScore
27.10
自引率
4.70%
发文量
1057
审稿时长
2 months
期刊介绍: Nucleic Acids Research (NAR) is a scientific journal that publishes research on various aspects of nucleic acids and proteins involved in nucleic acid metabolism and interactions. It covers areas such as chemistry and synthetic biology, computational biology, gene regulation, chromatin and epigenetics, genome integrity, repair and replication, genomics, molecular biology, nucleic acid enzymes, RNA, and structural biology. The journal also includes a Survey and Summary section for brief reviews. Additionally, each year, the first issue is dedicated to biological databases, and an issue in July focuses on web-based software resources for the biological community. Nucleic Acids Research is indexed by several services including Abstracts on Hygiene and Communicable Diseases, Animal Breeding Abstracts, Agricultural Engineering Abstracts, Agbiotech News and Information, BIOSIS Previews, CAB Abstracts, and EMBASE.
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