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通过体内足迹法鉴定人白细胞介素-3启动子中的关键调控位点。

Identification of a critical regulatory site in the human interleukin-3 promoter by in vivo footprinting.

作者信息

Cameron S, Taylor D S, TePas E C, Speck N A, Mathey-Prevot B

机构信息

Division of Pediatric Oncology, Dana-Farber Cancer Institute, Boston, MA 02115.

出版信息

Blood. 1994 May 15;83(10):2851-9.

PMID:8180380
Abstract

Interleukin-3 (IL-3) is involved in proliferation and differentiation of hematopoietic progenitor cells. Its expression is subject to precise, tissue-specific regulation, and has been studied extensively in the gibbon T-cell line MLA 144 by a combination of functional assays and DNA binding experiments. To extend these studies, the gibbon IL-3 promoter was cloned and in vivo footprinting of the gibbon and human IL-3 proximal promoters was performed. The gibbon IL-3 promoter was found to be highly homologous to its human counterpart and both promoters yielded identical in vivo footprints after induction of IL-3 synthesis. In particular, we observed specific protection of three guanines over a core sequence TGTGGTTT (IF-1IL3) that had not been recognized in previous studies. IF-1IL3 is not found in other cytokine promoters, but it is conserved in the IL-3 promoter of several species and is similar to a recurring motif in viral and T-cell-specific cellular enhancers. IF-1IL3 binds a specific complex in MLA 144 and Jurkat nuclear extracts in vitro, which shares the same specificity as the complex bound by the polyoma virus and T-cell receptor delta enhancers. Mutation of the three guanines in IF-1IL3 core sequence disrupts binding in vitro and abrogates the ability of the IL-3 promoter to mediate inducible expression in T cells. Although IF-1IL3 is necessary for IL-3 expression, it is not sufficient: a truncated IL-3 promoter with an intact IF-1IL3 site but no other activator sites is transcriptionally silent. These studies describe a new regulatory element within the IL-3 promoter that is essential for expression and conserved between species.

摘要

白细胞介素-3(IL-3)参与造血祖细胞的增殖和分化。其表达受到精确的、组织特异性的调控,并且通过功能测定和DNA结合实验相结合的方法,在长臂猿T细胞系MLA 144中进行了广泛研究。为了扩展这些研究,克隆了长臂猿IL-3启动子,并对长臂猿和人类IL-3近端启动子进行了体内足迹分析。发现长臂猿IL-3启动子与其人类对应物高度同源,并且在诱导IL-3合成后,两个启动子产生相同的体内足迹。特别是,我们观察到在核心序列TGTGGTTT(IF-1IL3)上三个鸟嘌呤的特异性保护,这在以前的研究中未被识别。IF-1IL3在其他细胞因子启动子中未发现,但在几种物种的IL-3启动子中保守,并且类似于病毒和T细胞特异性细胞增强子中的重复基序。IF-1IL3在体外与MLA 144和Jurkat核提取物中的一种特异性复合物结合,该复合物与多瘤病毒和T细胞受体δ增强子结合的复合物具有相同的特异性。IF-1IL3核心序列中三个鸟嘌呤的突变破坏了体外结合,并消除了IL-3启动子在T细胞中介导诱导性表达的能力。虽然IF-1IL3对IL-3表达是必需的,但并不充分:一个具有完整IF-1IL3位点但没有其他激活位点的截短IL-3启动子在转录上是沉默的。这些研究描述了IL-3启动子内一个新的调控元件,它对表达至关重要且在物种间保守。

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