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紧密间隔的人类补体基因之间依赖MAZ的终止。

MAZ-dependent termination between closely spaced human complement genes.

作者信息

Ashfield R, Patel A J, Bossone S A, Brown H, Campbell R D, Marcu K B, Proudfoot N J

机构信息

Sir William Dunn School of Pathology, University of Oxford, UK.

出版信息

EMBO J. 1994 Dec 1;13(23):5656-67. doi: 10.1002/j.1460-2075.1994.tb06904.x.

Abstract

The zinc finger protein MAZ, originally identified as a factor that binds to the c-myc P2 promoter, is associated with transcriptional termination. As shown in these studies, a termination sequence between the closely spaced human complement genes C2 and Factor B contains a protein binding site which interacts with three different proteins in vitro. Binding of one of these factors, MAZ, correlates with activity of the C2 termination sequence in vivo. Cloned MAZ was used to obtain a consensus binding site, G5AG5. This allowed identification of new sites, between the closely spaced human genes g11 and C4 and within an intron of the mouse IgM-D gene, where termination is known to occur and regulate the expression of IgD. The g11 and IgM MAZ sites lie within sequences that have activity in a termination assay and, furthermore, mutation of C2 or g11 MAZ sites severely reduces termination activity. MAZ bends DNA, and inherently bent DNA is highly active as a terminator, suggesting that MAZ-induced bending is important for C2 and g11 termination. We propose that MAZ sites exist in promoters which require protection against transcriptional interference, such as those of closely spaced genes, to cause efficient termination. The MAZ consensus sequence will facilitate the identification of further sites.

摘要

锌指蛋白MAZ最初被鉴定为一种与c-myc P2启动子结合的因子,它与转录终止有关。如这些研究所示,在紧密相邻的人类补体基因C2和因子B之间的一个终止序列包含一个蛋白质结合位点,该位点在体外与三种不同的蛋白质相互作用。这些因子之一MAZ的结合与体内C2终止序列的活性相关。克隆的MAZ被用于获得一个共有结合位点G5AG5。这使得能够在紧密相邻的人类基因g11和C4之间以及小鼠IgM-D基因的一个内含子内鉴定出新的位点,已知在这些位点发生终止并调节IgD的表达。g11和IgM的MAZ位点位于在终止试验中有活性的序列内,此外,C2或g11的MAZ位点突变会严重降低终止活性。MAZ使DNA弯曲,而固有弯曲的DNA作为终止子具有高度活性,这表明MAZ诱导的弯曲对于C2和g11的终止很重要。我们提出MAZ位点存在于需要防止转录干扰的启动子中,例如紧密相邻基因的启动子,以实现有效终止。MAZ共有序列将有助于进一步鉴定位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5599/395531/28dcc8643832/emboj00071-0152-a.jpg

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