Harnish Michael T, Lopez Daniel, Morrison Corbin T, Narayanan Ramesh, Fernandez Elias J, Shen Tongye
Department of Biochemistry & Cellular and Molecular Biology, University of Tennessee, Knoxville, TN 37996, USA.
Department of Medicine, College of Medicine, University of Tennessee Health Science Center, Memphis, TN 38103, USA.
Biology (Basel). 2023 Nov 17;12(11):1442. doi: 10.3390/biology12111442.
Intrinsically disordered regions (IDRs) of transcription factors play an important biological role in liquid condensate formation and gene regulation. It is thus desirable to investigate the druggability of IDRs and how small-molecule binders can alter their conformational stability. For the androgen receptor (AR), certain covalent ligands induce important changes, such as the neutralization of the condensate. To understand the specificity of ligand-IDR interaction and potential implications for the mechanism of neutralizing liquid-liquid phase separation (LLPS), we modeled and performed computer simulations of ligand-bound peptide segments obtained from the human AR. We analyzed how different covalent ligands affect local secondary structure, protein contact map, and protein-ligand contacts for these protein systems. We find that effective neutralizers make specific interactions (such as those between cyanopyrazole and tryptophan) that alter the helical propensity of the peptide segments. These findings on the mechanism of action can be useful for designing molecules that influence IDR structure and condensate of the AR in the future.
转录因子的内在无序区域(IDR)在液-液相分离和基因调控中发挥着重要的生物学作用。因此,研究IDR的可成药特性以及小分子结合剂如何改变其构象稳定性是很有必要的。对于雄激素受体(AR)而言,某些共价配体会引发重要变化,比如中和凝聚物。为了理解配体-IDR相互作用的特异性以及对中和液-液相分离(LLPS)机制的潜在影响,我们对从人AR获得的配体结合肽段进行了建模和计算机模拟。我们分析了不同共价配体如何影响这些蛋白质系统的局部二级结构、蛋白质接触图以及蛋白质-配体接触。我们发现,有效的中和剂会形成特定的相互作用(如氰基吡唑与色氨酸之间的相互作用),从而改变肽段的螺旋倾向。这些关于作用机制的发现对于未来设计影响AR的IDR结构和凝聚物的分子可能会有所帮助。