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一种三元复合因子依赖性机制在B淋巴细胞抗原受体交联后通过选择性血清反应元件介导egr-1的诱导。

A ternary complex factor-dependent mechanism mediates induction of egr-1 through selective serum response elements following antigen receptor cross-linking in B lymphocytes.

作者信息

McMahon S B, Monroe J G

机构信息

Department of Pathology and Laboratory Medicine, School of Medicine, University of Pennsylvania, Philadelphia 19104.

出版信息

Mol Cell Biol. 1995 Feb;15(2):1086-93. doi: 10.1128/MCB.15.2.1086.

Abstract

Induction of the primary response gene egr-1 occurs rapidly following antigen receptor cross-linking in B lymphocytes. Antisense studies have demonstrated that this induction is necessary for their subsequent activation to this signal. The present study examines the molecular mechanism whereby the receptor-generated signals interact with the egr-1 promoter to elicit transcription. Deletion mapping and point mutations have indicated that two of the five serum response elements (SREs) in the egr-1 promoter can mediate induction. Of the two critical SREs, both are capable of mediating maximal induction even in the absence of the other SRE. Our results also indicate that adjacent Ets motifs are necessary for induction. Like the c-fos SRE, the egr-1 SRE/Ets sites are occupied by a multiprotein (ternary) complex containing a homodimer of serum response factor and an unidentified member of the Ets family of transcription factors. The identification of a ternary complex-dependent mechanism of egr-1 induction, along with selective utilization of SREs in B lymphocytes, suggests that a complicated array of signaling cascades interacts with unique combinations of regulatory elements in the egr-1 promoter in different cell types.

摘要

在B淋巴细胞中,抗原受体交联后,初级反应基因egr-1的诱导迅速发生。反义研究表明,这种诱导对于它们随后对该信号的激活是必要的。本研究探讨了受体产生的信号与egr-1启动子相互作用以引发转录的分子机制。缺失图谱分析和点突变表明,egr-1启动子中的五个血清反应元件(SRE)中有两个可以介导诱导。在这两个关键的SRE中,即使没有另一个SRE,两者都能够介导最大诱导。我们的结果还表明相邻的Ets基序对于诱导是必要的。与c-fos SRE一样,egr-1 SRE/Ets位点被一种多蛋白(三元)复合物占据,该复合物包含血清反应因子的同二聚体和Ets转录因子家族的一个未鉴定成员。egr-1诱导的三元复合物依赖性机制的鉴定,以及B淋巴细胞中SRE的选择性利用,表明在不同细胞类型中,一系列复杂的信号级联与egr-1启动子中调控元件的独特组合相互作用。

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