首页> 外文学位 >Regulation of the Yin Yang 1 transcription factor binding to the murine 3' Igh enhancers hs3A and hs3B, by inducers of class switch recombination.
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Regulation of the Yin Yang 1 transcription factor binding to the murine 3' Igh enhancers hs3A and hs3B, by inducers of class switch recombination.

机译:通过类开关重组的诱导因子调节与小鼠3'Igh增强子hs3A和hs3B结合的阴阳1转录因子。

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The 3 Igh enhancers, hs3B and/or hs4, are required for germline transcription (GT), and hence, class switch recombination (CSR) for multiple isotypes. A number of hs3-binding transcription factors have been identified by EMSA, including octamer and NF-kB family members, and Pax5. We have found that the binding of the transcription factor, Yin Yang 1 (YY1), to hs3 and to the μE1 site of the intronic enhancer, Eμ, is induced in primary splenic B cells after ∼48 hrs in response to LPS and other activators of CSR. Transient transfection experiments in B cell lines indicate that YY1 is an activator of hs3. Interestingly, levels of YY1 expression are unchanged in resting and LPS-stimulated B cells. Mixing experiments followed by EMSA showed that a protein present in resting B cells prevented YY1's binding to DNA. We found that recombinant Rb protein inhibited binding of YY1 to hs3 in a dose-dependent manner; and we have identified complexes of endogenous YY1 with the retinoblastoma protein (Rb) in resting B cells, but not in LPS stimulated B cells. A difference in Rb phosphorylation state was also confirmed between resting (G0) B cells and LPS stimulated B cells. These observations suggest that the interaction of YY1 with hypo-phosphorylated Rb in resting B cells prevents YY1's interaction with DNA. After stimulation with class switching activators, such as LPS, Rb becomes hyper-phosphorylated, YY1 is released and can then bind to the hs3 enhancer and Eμ. Our data provide the first evidence for the role of YY1 in regulating hs3 enhancer activity, and suggest a mechanism by which cell cycle control and the early stages of class switch recombination, mediated by the 3 Igh and intronic enhancers, can be linked at the molecular level.
机译:3 ' Igh 增强子hs3B和/或hs4是种系转录(GT)所必需的,因此,多种同种型的类别转换重组(CSR)也需要。 EMSA已鉴定出许多结合hs3的转录因子,包括八聚体和NF-kB家族成员以及Pax5。我们已经发现,转录因子Yin Yang 1(YY1)与hs3和内含子增强子μE1的结合在大约48岁后在原代脾脏B细胞中被诱导小时响应LPS和其他CSR激活剂。 B细胞系中的瞬时转染实验表明YY1是hs3的激活剂。有趣的是,在静息和LPS刺激的B细胞中,YY1表达水平没有变化。 EMSA进行的混合实验表明,静止的B细胞中存在的一种蛋白质阻止了YY1与DNA的结合。我们发现重组Rb蛋白以剂量依赖的方式抑制YY1与hs3的结合。并且我们已经确定了内源性YY1与视网膜母细胞瘤蛋白(Rb)在静止的B细胞中的复合物,但在LPS刺激的B细胞中没有。还证实了静止的(G 0 )B细胞和LPS刺激的B细胞之间Rb磷酸化状态的差异。这些观察结果表明,在静止的B细胞中,YY1与次磷酸化的Rb的相互作用阻止了YY1与DNA的相互作用。用类开关激活剂(如LPS)刺激后,Rb过度磷酸化,释放YY1,然后可以与hs3增强子和 E μ结合。我们的数据为YY1在调节hs3增强子活性中的作用提供了第一个证据,并提出了由3 ' 介导的细胞周期控制和类转换重组早期的机制。 Igh 和内含子增强剂可以在分子水平连接。

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