Department of Life Science, Research Institute for Natural Sciences, College of Natural Sciences, Hanyang University, Seoul 04763, Korea.
Department of Molecular Medicine, USF Health Byrd Alzheimer's Research Institute, Morsani College of Medicine, University of South Florida, Tampa, FL 33612, USA.
Int J Mol Sci. 2022 Jun 7;23(12):6369. doi: 10.3390/ijms23126369.
CP2c, also known as TFCP2, α-CP2, LSF, and LBP-1c, is a prototypic member of the transcription factor (TF) CP2 subfamily involved in diverse ubiquitous and tissue/stage-specific cellular processes and in human malignancies including cancer. Despite its importance, many fundamental regulatory mechanisms of CP2c are still unclear. Here, we uncover unprecedented structural and functional aspects of CP2c using DSP crosslinking and Western blot in addition to conventional methods. We found that a monomeric form of a CP2c homotetramer (tCP2c; [C4]) binds to the known CP2c-binding DNA motif (CNRG-N(5~6)-CNRG), whereas a dimeric form of a CP2c, CP2b, and PIAS1 heterohexamer ([C2B2P2]) binds to the three consecutive CP2c half-sites or two staggered CP2c binding motifs, where the [C4] exerts a pioneering function for recruiting the [C2B2P2] to the target. All CP2c exists as a [C4], or as a [C2B2P2] or [C2B2P2] in the nucleus. Importantly, one additional cytosolic heterotetrameric CP2c and CP2a complex, ([C2A2]), exerts some homeostatic regulation of the nuclear complexes. These data indicate that these findings are essential for the transcriptional regulation of CP2c in cells within relevant timescales, providing clues not only for the transcriptional regulation mechanism by CP2c but also for future therapeutics targeting CP2c function.
CP2c,也称为 TFCP2、α-CP2、LSF 和 LBP-1c,是转录因子(TF)CP2 亚家族的原型成员,参与多种普遍存在的组织/阶段特异性细胞过程以及包括癌症在内的人类恶性肿瘤。尽管它很重要,但 CP2c 的许多基本调控机制仍不清楚。在这里,我们使用 DSP 交联和 Western blot 以及传统方法揭示了 CP2c 的前所未有的结构和功能方面。我们发现 CP2c 同源四聚体(tCP2c;[C4])的单体形式与已知的 CP2c 结合 DNA 基序(CNRG-N(5~6)-CNRG)结合,而 CP2c 的二聚体形式 CP2b 和 PIAS1 异六聚体([C2B2P2])结合到三个连续的 CP2c 半位点或两个交错的 CP2c 结合基序,其中 [C4] 发挥开拓性功能,将 [C2B2P2] 招募到靶标上。所有 CP2c 都以 [C4] 形式存在,或者在核内以 [C2B2P2] 或 [C2B2P2] 形式存在。重要的是,一种额外的细胞质异四聚体 CP2c 和 CP2a 复合物,([C2A2]),对核复合物的一些体内稳态调节发挥作用。这些数据表明,这些发现对于细胞内 CP2c 的转录调控至关重要,不仅为 CP2c 的转录调控机制提供了线索,也为未来针对 CP2c 功能的治疗方法提供了线索。