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一种指导盘基网柄菌柄细胞特异性基因表达的DNA序列元件的特征分析。

Characterisation of a DNA sequence element that directs Dictyostelium stalk cell-specific gene expression.

作者信息

Ceccarelli A, Zhukovskaya N, Kawata T, Bozzaro S, Williams J

机构信息

Dipartimento di Scienze Cliniche e Biologiche, Ospedale San Luigi Gonzaga, Reg. Gonzole 10 10043, Orbassano Torino, Italy.

出版信息

Differentiation. 2000 Dec;66(4-5):189-96. doi: 10.1046/j.1432-0436.2000.660405.x.

Abstract

The ecmB gene of Dictyostelium is expressed at culmination both in the prestalk cells that enter the stalk tube and in ancillary stalk cell structures such as the basal disc. Stalk tube-specific expression is regulated by sequence elements within the cap-site proximal part of the promoter, the stalk tube (ST) promoter region. Dd-STATa, a member of the STAT transcription factor family, binds to elements present in the ST promoter-region and represses transcription prior to entry into the stalk tube. We have characterised an activatory DNA sequence element, that lies distal to the repressor elements and that is both necessary and sufficient for expression within the stalk tube. We have mapped this activator to a 28 nucleotide region (the 28-mer) within which we have identified a GA-containing sequence element that is required for efficient gene transcription. The Dd-STATa protein binds to the 28-mer in an in vitro binding assay, and binding is dependent upon the GA-containing sequence. However, the ecmB gene is expressed in a Dd-STATa null mutant, therefore Dd-STATa cannot be responsible for activating the 28-mer in vivo. Instead, we identified a distinct 28-mer binding activity in nuclear extracts from the Dd-STATa null mutant, the activity of this GA binding activity being largely masked in wild type extracts by the high affinity binding of the Dd-STATa protein. We suggest, that in addition to the long range repression exerted by binding to the two known repressor sites, Dd-STATa inhibits transcription by direct competition with this putative activator for binding to the GA sequence.

摘要

盘基网柄菌的ecmB基因在发育成子实体阶段,在进入柄管的前柄细胞以及辅助柄细胞结构(如基盘)中均有表达。柄管特异性表达受启动子帽位点近端部分(即柄管(ST)启动子区域)内的序列元件调控。Dd-STATa是STAT转录因子家族的成员,它与ST启动子区域中的元件结合,并在进入柄管之前抑制转录。我们鉴定了一个激活型DNA序列元件,它位于阻遏元件的远端,对于在柄管内的表达既必要又充分。我们已将这个激活剂定位到一个28个核苷酸的区域(28聚体),在该区域内我们鉴定出一个含GA的序列元件,它是高效基因转录所必需的。在体外结合试验中,Dd-STATa蛋白与28聚体结合,且这种结合依赖于含GA的序列。然而,ecmB基因在Dd-STATa基因敲除突变体中仍有表达,因此Dd-STATa在体内不可能是激活28聚体的原因。相反,我们在Dd-STATa基因敲除突变体的核提取物中鉴定出一种独特的28聚体结合活性,在野生型提取物中,这种GA结合活性的活性很大程度上被Dd-STATa蛋白的高亲和力结合所掩盖。我们认为,除了通过与两个已知的阻遏位点结合产生的远距离抑制作用外,Dd-STATa还通过与这种假定的激活剂直接竞争结合GA序列来抑制转录。

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