Yeh Tien-Shun, Lin Yu-Min, Hsieh Rong-Hong, Tseng Min-Jen
Graduate Institute of Cell and Molecular Biology, Center for Stem Cells Research at Wan-Fang Hospital, Taipei Medical University, Taipei 110, Taiwan.
J Biol Chem. 2003 Oct 24;278(43):41963-9. doi: 10.1074/jbc.M304353200. Epub 2003 Aug 11.
Notch receptors are evolutionarily conserved from Drosophila to human and play important roles in cell fate decisions. After ligand binding, Notch receptors are cleaved to release their intracellular domains. The intracellular domains, the activated form of Notch receptors, are then translocated into the nucleus where they interact with other transcriptional machinery to regulate the expression of cellular genes. To dissect the molecular mechanisms of Notch signaling, the cellular targets that interact with Notch1 receptor intracellular domain (N1IC) were screened. In this study, we found that endogenous transcription factor Ying Yang 1 (YY1) was associated with exogenous N1IC in human K562 erythroleukemic cells. The ankyrin (ANK) domain of N1IC and zinc finger domains of YY1 were essential for the association of N1IC and YY1 according to the pull-down assay of glutathione S-transferase fusion proteins. Furthermore, both YY1 and N1IC were present in a large complex of the nucleus to suppress the luciferase reporter activity transactivated by Notch signaling. The transcription factor YY1 indirectly regulated the transcriptional activity of the wild-type CBF1-response elements via the direct interaction of N1IC and CBF1. We also demonstrated the association between endogenous N1IC and intrinsic YY1 in human acute T-cell lymphoblastic leukemia cell lines. Taken together, these results indicate that transcription factor YY1 may modulate Notch signaling via association with the high molecular weight Notch complex.
Notch受体在从果蝇到人类的进化过程中高度保守,在细胞命运决定中发挥重要作用。配体结合后,Notch受体被切割以释放其细胞内结构域。这些细胞内结构域即Notch受体的活化形式,随后转移至细胞核,在那里它们与其他转录机制相互作用,以调节细胞基因的表达。为了剖析Notch信号传导的分子机制,我们筛选了与Notch1受体内结构域(N1IC)相互作用的细胞靶点。在本研究中,我们发现内源性转录因子阴阳1(YY1)在人K562红白血病细胞中与外源性N1IC相关联。根据谷胱甘肽S-转移酶融合蛋白的下拉试验,N1IC的锚蛋白(ANK)结构域和YY1的锌指结构域对于N1IC与YY1的关联至关重要。此外,YY1和N1IC均存在于细胞核的一个大复合物中,以抑制Notch信号传导激活的荧光素酶报告基因活性。转录因子YY1通过N1IC与CBF1的直接相互作用间接调节野生型CBF1反应元件的转录活性。我们还证实了内源性N1IC与人类急性T细胞淋巴细胞白血病细胞系中内源性YY1之间存在关联。综上所述, 这些结果表明转录因子YY1可能通过与高分子量Notch复合物的关联来调节Notch信号传导。