Park Sung-Kyun, Lim Jung-Hyun, Kang Chang-Joong
Graduate School of Biotechnology, Institute of Life Science and Resources, Kyung Hee University, 1 Seocheon, Giheung, Yongin, Gyeonggi-do 446-701, Republic of Korea.
Biochim Biophys Acta. 2009 Nov-Dec;1789(11-12):702-8. doi: 10.1016/j.bbagrm.2009.08.011. Epub 2009 Sep 6.
Transcriptional function of a novel Crlz1 protein was examined by using the CBF site-containing IgJ enhancer, because it was originally cloned due to its ability to bind CBFbeta, a subunit of CBF heterodimer, of which Runx is the other subunit. In a cotransfection experiment, Crlz1 was shown to increase the IgJ enhancer activity due to its CBF sites, as verified by both the absence of Crlz1 effect on the CBF-site mutated IgJ enhancer and the presence of transcriptional synergy between Crlz1 and CBFbeta. Most significantly, the cytoplasmic CBFbeta was shown to be mobilized into the nucleus when it was coexpressed with the nuclear Crlz1. This mobilized nuclear CBFbeta could then heterodimerize with the nuclear Runx to bind to its target DNA site with a high affinity. Furthermore, in our coimmunoprecipitation and chromatin immunoprecipitation experiments, Crlz1 was found to be bound to the resulting CBF heterodimer in a form of ternary complex and to remain in that ternary complex even when CBF bound to its target DNA site such as IgJ enhancer.
通过使用含CBF位点的IgJ增强子来检测一种新型Crlz1蛋白的转录功能,因为它最初是因其能够结合CBF异二聚体的一个亚基CBFβ而被克隆的,CBF异二聚体的另一个亚基是Runx。在共转染实验中,Crlz1因其CBF位点而被证明可增加IgJ增强子活性,这一点通过Crlz1对CBF位点突变的IgJ增强子无作用以及Crlz1与CBFβ之间存在转录协同作用得到证实。最显著的是,当细胞质中的CBFβ与细胞核中的Crlz1共表达时,它会被转运到细胞核中。这种转运到细胞核中的CBFβ随后可以与细胞核中的Runx异二聚化,以高亲和力结合到其靶DNA位点。此外,在我们的共免疫沉淀和染色质免疫沉淀实验中,发现Crlz1以三元复合物的形式与形成的CBF异二聚体结合,并且即使CBF结合到其靶DNA位点如IgJ增强子,它也会保留在该三元复合物中。