Cui Jieying H, Kwan James Z J, Faghihi Armin, Nguyen Thomas F, Teves Sheila S
Department of Biochemistry and Molecular Biology, Life Sciences Institute, University of British Columbia, 2350 Health Sciences Mall, Vancouver, BCV6T 1Z3, Canada.
Nucleic Acids Res. 2025 May 10;53(9). doi: 10.1093/nar/gkaf436.
The TATA box-binding protein (TBP) is an evolutionarily conserved basal transcription factor common in the pre-initiation complex of all three eukaryotic RNA polymerases (RNA Pols). Despite their high conservation, homologous TBPs exhibit species- and tissue-specific functions that may contribute to the increasingly complex gene expression regulation across evolutionary time. To determine the molecular mechanisms of species- and tissue-specificity for homologous TBPs, we examined the ability of yeast TBP and murine TBP paralogs to replace the endogenous TBP in mouse embryonic stem cells (mESCs). We show that, despite the high conservation in the DNA-binding domain among the homologs, they cannot fully rescue the lethality of TBP depletion in mESCs, which correlates with their inability to support RNA Pol III transcription. Furthermore, we show that the homologs differentially support stress-induced transcription reprogramming, with the divergent N-terminal domain playing a role in modulating changes in transcriptional response. Lastly, we show that the homologs have vastly different DNA binding dynamics, suggesting a potential mechanism for the distinct functional behavior observed among the homologs. Taken together, these data show a remarkable balance between flexibility and essentiality for the different functions of homologous TBP in eukaryotic transcription.
TATA 框结合蛋白(TBP)是一种在所有三种真核生物 RNA 聚合酶(RNA Pols)的起始前复合物中常见的进化保守的基础转录因子。尽管它们具有高度保守性,但同源 TBP 表现出物种和组织特异性功能,这可能有助于在进化过程中基因表达调控日益复杂。为了确定同源 TBP 的物种和组织特异性的分子机制,我们检测了酵母 TBP 和小鼠 TBP 旁系同源物在小鼠胚胎干细胞(mESCs)中替代内源性 TBP 的能力。我们发现,尽管同源物之间的 DNA 结合结构域高度保守,但它们不能完全挽救 mESCs 中 TBP 缺失导致的致死性,这与其无法支持 RNA Pol III 转录相关。此外,我们表明同源物对压力诱导的转录重编程的支持存在差异,不同的 N 端结构域在调节转录反应变化中起作用。最后,我们表明同源物具有截然不同的 DNA 结合动力学,这表明在同源物中观察到的不同功能行为存在潜在机制。综上所述,这些数据表明同源 TBP 在真核转录中的不同功能在灵活性和必要性之间存在显著平衡。