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Two different negative regulatory elements control the transcription of T-cell activation gene 3 in activated mast cells.

机译:两种不同的负调控元件控制活化的肥大细胞中T细胞活化基因3的转录。

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摘要

T-cell activation gene 3 (TCA3) encodes a beta-chemokine that is transcriptionally regulated in mast cells; the gene has a functional NF-kappaB element at positions -194 to -185. The 5'-flanking region of this gene is also known to have a negative regulatory region between -2057 and -1342. To characterize the negative regulatory elements (NREs), this region was sequenced and then digested by HindIII enzyme into two fragments, NRE-1 (-2057 to -1493) and NRE-2 (-1492 to -1342). Both NRE-1 and NRE-2 in the 5'-3' orientation inhibited chloramphenicol acetyltransferase (CAT)-protein synthesis by a TCA3-CAT construct transfected into mast cells that were then activated. Only NRE-1 inhibited CAT-protein synthesis in the 3'-5' orientation. Further deletion of the 5' region of NRE-1 partially abolished the inhibitory activity. Both NRE-1 and NRE-2 inhibited the activity of a CD20-CAT construct independent of cell activation. Electrophoretic mobility shift assays showed DNA-protein complex formation with subsequences (CCCCCATTCT) of NRE-1 (NRE-1a) and (CCATGA) of NRE-2 (NRE-2b). NRE-1a appears to be novel. NRE-2b is identical with a putative silencer motif in the alphaIIb integrin gene. Site-directed mutagenesis demonstrated that both NRE-1a and NRE-2b are important in the negative regulation of TCA3 promoter activity. In vivo ligation-mediated PCR footprinting of the NRE-2 region revealed protection between -1372 and -1354, which contains NRE-2b. The data thus demonstrate identity of a silencer motif, here termed NRE-2b, in both the alphaIIb integrin gene and the TCA3, and that this silencer region in mast cells is functional both in vivo and in vitro. Further, evidence is presented that the promoter for TCA3 contains a novel silencer motif, termed NRE-1a, characterized by a CT-rich sequence.
机译:T细胞活化基因3(TCA3)编码在肥大细胞中受转录调控的β-趋化因子。该基因在-194至-185位置具有功能性NF-κB元件。还已知该基因的5'侧翼区域在-2057和-1342之间具有负调控区域。为了表征负调控元件(NRE),对该区域进行测序,然后用HindIII酶消化成两个片段,即NRE-1(-2057至-1493)和NRE-2(-1492至-1342)。 NRE-1和NRE-2均以5'-3'方向通过转染到肥大细胞中的TCA3-CAT构建体抑制氯霉素乙酰转移酶(CAT)-蛋白的合成,然后被激活。只有NRE-1抑制CAT蛋白在3'-5'方向的合成。 NRE-1的5'区域的进一步缺失部分地消除了抑制活性。 NRE-1和NRE-2均抑制CD20-CAT构建体的活性,而与细胞活化无关。电泳迁移率变动分析显示DNA-蛋白质复合物的形成具有NRE-1(NRE-1a)和(CCATGA)NRE-2(NRE-2b)的子序列(CCCCCATTCT)。 NRE-1a似乎是新颖的。 NRE-2b与alphaIIb整联蛋白基因中假定的沉默子基序相同。定点诱变表明NRE-1a和NRE-2b在TCA3启动子活性的负调控中均很重要。 NRE-2区域的体内连接介导的PCR足迹显示,在-1372和-1354之间存在保护,其中包含NRE-2b。因此,数据证明了αIIb整联蛋白基因和TCA3中均称为NRE-2b的沉默子基序的身份,并且肥大细胞中的该沉默子区域在体内和体外均起作用。此外,提供的证据表明,TCA3的启动子包含一个新的沉默子基序,称为NRE-1a,其特征是富含CT的序列。

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