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与人类载脂蛋白A-II启动子负调控元件D结合的核因子的纯化与鉴定:一种Ets相关蛋白GABP可逆转负调控作用。

Purification and characterization of nuclear factors binding to the negative regulatory element D of human apolipoprotein A-II promoter: a negative regulatory effect is reversed by GABP, an Ets-related protein.

作者信息

Cardot P, Pastier D, Lacorte J M, Mangeney M, Zannis V I, Chambaz J

机构信息

URA CNRS 1283, Université Pierre et Marie Curie, Paris, France.

出版信息

Biochemistry. 1994 Oct 11;33(40):12139-48. doi: 10.1021/bi00206a017.

Abstract

We have previously shown that transcription of the human apolipoprotein A-II (apoA-II) gene is controlled by a complex set of regulatory elements [Cardot et al. (1993) Biochemistry 32, 9080-9093]. We have also identified previously described, as well as new activities which bind to these elements and influence to varying degrees the transcription of the apoA-II gene. DNA binding and competition assays indicated that element D binds three new activities, designated AIID1, AIID2, and AIID4, as well as an activity related to C/EBP. Activities AIID1, AIID2, and AIID4 were purified and characterized further in order to determine their function on the transcriptional regulation of human apoA-II gene. SDS-PAGE analysis as well as photoaffinity cross-linking of the affinity-purified AIID2 showed that it consists of three proteins with molecular masses ranging between 54 and 63 kDa. The amino acid sequence of tryptic peptides obtained from AIID2 protein bands revealed that it is homologous to GABP, an Ets-related protein. Similar analysis showed that affinity-purified AIID4 has an apparent molecular mass of 130 kDa. AIID1 activity was purified partially; in addition to binding to the apoA-II promoter, AIID1 also binds to the regulatory element C of apoCIII and may play a role in the transcriptional regulation of both genes. Methylation interference of G residues and permanganate modification of T residues indicated that the binding sites of AIID2 and AIID4 were contiguous on element D. However, the binding site of AIID1 overlaps with the binding sites of both AIID2 and AIID4. This suggests that the binding of AIID1 and AIID2 or of AIID1 and AIID4 may be mutually exclusive, whereas AIID2 and AIID4 may bind simultaneously. Transcription from a minimal promoter containing elements AB, C, and D of apoA-II increased 1.5- to 1.6-fold when element D is deleted, as well as by promoter mutations which eliminated the binding of both AIID1 and/or AIID4 to element D, but permitted the binding of AIID2/GABP. The findings suggest that element D has a negative regulatory role on apoA-II gene transcription when it is occupied by protein AIID1 and/or AIID4. This negative effect is reversed when element D is occupied only by the regulatory factor AIID2/GABP.

摘要

我们之前已经表明,人类载脂蛋白A-II(apoA-II)基因的转录受一组复杂的调控元件控制[卡多特等人(1993年),《生物化学》32卷,9080 - 9093页]。我们还鉴定出了先前描述的以及与这些元件结合并不同程度影响apoA-II基因转录的新活性。DNA结合和竞争分析表明,元件D结合三种新活性,分别命名为AIID1、AIID2和AIID4,以及一种与C/EBP相关的活性。为了确定它们对人类apoA-II基因转录调控的功能,对AIID1、AIID2和AIID4活性进行了进一步纯化和表征。SDS-PAGE分析以及对亲和纯化的AIID2进行光亲和交联显示,它由三种分子量在54至63 kDa之间的蛋白质组成。从AIID2蛋白条带获得的胰蛋白酶肽段的氨基酸序列表明,它与GABP(一种Ets相关蛋白)同源。类似分析表明,亲和纯化的AIID4的表观分子量为130 kDa。AIID1活性被部分纯化;除了与apoA-II启动子结合外,AIID1还与apoCIII的调控元件C结合,可能在这两个基因的转录调控中发挥作用。G残基的甲基化干扰和T残基的高锰酸盐修饰表明,AIID2和AIID4在元件D上的结合位点相邻。然而,AIID1的结合位点与AIID2和AIID4的结合位点重叠。这表明AIID1与AIID2或AIID1与AIID4的结合可能相互排斥,而AIID2和AIID4可能同时结合。当删除元件D以及通过启动子突变消除AIID1和/或AIID4与元件D的结合,但允许AIID2/GABP结合时,含有apoA-II的元件AB、C和D的最小启动子的转录增加了1.5至1.6倍。这些发现表明,当元件D被蛋白AIID1和/或AIID4占据时,它对apoA-II基因转录具有负调控作用。当元件D仅被调控因子AIID2/GABP占据时,这种负面影响会被逆转。

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