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酵母a1/α2同源结构域异二聚体α2尾部插入导致DNA识别与弯曲改变。

Altered DNA recognition and bending by insertions in the alpha 2 tail of the yeast a1/alpha 2 homeodomain heterodimer.

作者信息

Jin Y, Mead J, Li T, Wolberger C, Vershon A K

机构信息

Department of Molecular Biology and Biochemistry, Rutgers University, Piscataway, NJ 08855-0759, USA.

出版信息

Science. 1995 Oct 13;270(5234):290-3. doi: 10.1126/science.270.5234.290.

Abstract

The yeast MAT alpha 2 and MATa1 homeodomain proteins bind cooperatively as a heterodimer to sites upstream of haploid-specific genes, repressing their transcription. In the crystal structure of alpha 2 and a1 bound to DNA, each homeodomain makes independent base-specific contacts with the DNA and the two proteins contact each other through an extended tail region of alpha 2 that tethers the two homeodomains to one another. Because this extended region may be flexible, the ability of the heterodimer to discriminate among DNA sites with altered spacing between alpha 2 and a1 binding sites was examined. Spacing between the half sites was critical for specific DNA binding and transcriptional repression by the complex. However, amino acid insertions in the tail region of alpha 2 suppressed the effect of altering an a1/alpha 2 site by increasing the spacing between the half sites. Insertions in the tail also decreased DNA bending by a1/alpha 2. Thus tethering the two homeodomains contributes to DNA bending by a1/alpha 2, but the precise nature of the resulting bend is not essential for repression.

摘要

酵母 MATα2 和 MATa1 同源结构域蛋白作为异源二聚体协同结合到单倍体特异性基因上游的位点,抑制它们的转录。在与 DNA 结合的α2 和 a1 的晶体结构中,每个同源结构域与 DNA 进行独立的碱基特异性接触,并且这两种蛋白质通过α2 的一个延伸尾部区域相互接触,该区域将两个同源结构域连接在一起。由于这个延伸区域可能是灵活的,因此研究了异源二聚体区分α2 和 a1 结合位点之间间距改变的 DNA 位点的能力。半位点之间的间距对于复合物特异性结合 DNA 和转录抑制至关重要。然而,α2 尾部区域的氨基酸插入通过增加半位点之间的间距抑制了改变 a1/α2 位点的影响。尾部的插入也减少了 a1/α2 引起的 DNA 弯曲。因此,连接两个同源结构域有助于 a1/α2 引起的 DNA 弯曲,但所得弯曲的确切性质对于抑制并不重要。

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