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雌激素受体促进起始前复合物的组装:通用转录因子TFIIB的参与。

Oestrogen receptor facilitates the formation of preinitiation complex assembly: involvement of the general transcription factor TFIIB.

作者信息

Sabbah M, Kang K I, Tora L, Redeuilh G

机构信息

INSERM U482, Hôpital Saint-Antoine, 184 Rue du Faubourg Saint-Antoine, 75571 Paris Cedex 12, France.

出版信息

Biochem J. 1998 Dec 15;336 ( Pt 3)(Pt 3):639-46. doi: 10.1042/bj3360639.

Abstract

The action of oestrogen hormones is mediated through the oestrogen receptor (ER), a member of a large superfamily of nuclear receptors that function as ligand-activated transcription factors. Sequence-specific transcription factors, including the nuclear receptor superfamily, are thought to interact either directly or indirectly with general transcription factors to regulate transcription. Although numerous studies have focused on the identification of potential co-activators interacting with isolated trans-activation domains of ER, few have investigated the mechanisms by which ER transmits its signal to the basal transcription machinery. We show that ER does not stabilize the binding of the TATA-box binding protein (TBP) of the TFIID complex, or of TFIIB to the promoter, although a stable ER-TBP-TFIIB-promoter complex was detected, suggesting that ER, TBP and TFIIB might interact with each other to form a complex to the promoter. We also demonstrate that ER binds specifically to TFIIB, a key component of the preinitiation complex. Affinity chromatography with immobilized deletion mutants of ER maps a TFIIB interaction region that encompasses the DNA-binding domain. The addition of excess TFIIB to transcription reactions in vitro did not, however, affect the magnitude of transcriptional activation by ER. These results indicate that, in contrast with current models, ER does not activate transcription by increasing the rate of assembly of TFIIB into the transcription complex. An increased concentration of TFIIB was unable, by itself, to overcome the requirement for ER. By using an immobilized promoter-template assay employing nuclear extract from HeLa cells, recombinant human ER increased the stable association of subsequent components of the transcription machinery (TFIIE and TFIIF), in correlation with ER-induced transcription. Our results suggest that ER acts, in an early step, during or immediately after the formation of template-committed complexes containing TFIIB, favouring the recruitment of one or more components of the basic transcription machinery as well as co-activators.

摘要

雌激素的作用是通过雌激素受体(ER)介导的,ER是核受体大家族的成员,作为配体激活的转录因子发挥作用。序列特异性转录因子,包括核受体超家族,被认为直接或间接与通用转录因子相互作用以调节转录。尽管众多研究聚焦于鉴定与ER分离的反式激活结构域相互作用的潜在共激活因子,但很少有研究探究ER将其信号传递至基础转录机制的机制。我们发现,虽然检测到了稳定的ER-TBP-TFIIB-启动子复合物,但ER并不会稳定TFIID复合物的TATA盒结合蛋白(TBP)或TFIIB与启动子的结合,这表明ER、TBP和TFIIB可能相互作用形成与启动子的复合物。我们还证明,ER特异性结合转录起始前复合物的关键成分TFIIB。用固定化的ER缺失突变体进行亲和层析,绘制了一个包含DNA结合结构域的TFIIB相互作用区域。然而,在体外转录反应中加入过量的TFIIB并不会影响ER介导的转录激活程度。这些结果表明,与当前模型相反,ER不是通过提高TFIIB组装到转录复合物中的速率来激活转录的。TFIIB浓度的增加本身并不能克服对ER的需求。通过使用基于HeLa细胞核提取物的固定化启动子模板测定法,重组人ER增加了转录机制后续成分(TFIIE和TFIIF)的稳定结合,这与ER诱导的转录相关。我们的结果表明,ER在早期阶段,在包含TFIIB的模板承诺复合物形成期间或之后立即发挥作用,有利于基础转录机制的一种或多种成分以及共激活因子的募集。

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