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由两种不同同源结构域蛋白组成的二聚体对DNA操纵基因的识别。

Recognition of a DNA operator by a dimer composed of two different homeodomain proteins.

作者信息

Goutte C, Johnson A D

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco.

出版信息

EMBO J. 1994 Mar 15;13(6):1434-42. doi: 10.1002/j.1460-2075.1994.tb06397.x.

Abstract

The yeast homeodomain proteins a1 and alpha 2 interact to form a heterodimer that binds DNA with high specificity. The DNA recognition element consists of two similar half sites, arranged with dyad symmetry and separated by a fixed number of base pairs. We demonstrate that in the a1 alpha 2-DNA complex, one of these half-sites is bound by a1 while the other is bound by alpha 2. These assignments allow a comparison of the chemical and nuclease protection patterns produced by both proteins when bound together to the hsg operator. Contrary to simple expectations, we propose that the a1 and alpha 2 homeodomains are arranged on the DNA in tandem, despite the fact that the recognition sequence is dyad symmetric.

摘要

酵母同源结构域蛋白a1和α2相互作用形成异二聚体,该异二聚体以高特异性结合DNA。DNA识别元件由两个相似的半位点组成,呈二元对称排列,并由固定数量的碱基对隔开。我们证明,在a1α2-DNA复合物中,其中一个半位点由a1结合,另一个由α2结合。这些分配使得能够比较两种蛋白质共同结合到hsg操纵基因时产生的化学和核酸酶保护模式。与简单预期相反,我们提出a1和α2同源结构域在DNA上串联排列,尽管识别序列是二元对称的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc7e/394961/8e52483f860c/emboj00054-0197-a.jpg

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