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POU特异性同源结构域中的一个不变天冬酰胺调节Oct-2 POU基序的特异性。

An invariant asparagine in the POU-specific homeodomain regulates the specificity of the Oct-2 POU motif.

作者信息

Botfield M C, Jancso A, Weiss M A

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

Biochemistry. 1994 Jul 5;33(26):8113-21. doi: 10.1021/bi00192a016.

Abstract

The homeodomain defines a family of transcription factors broadly involved in the regulation of gene expression. DNA recognition, as observed in three representative complexes (Engrailed, Antennapedia, and MAT alpha 2), is mediated in the major groove by a helix-turn-helix (HTH) element and in the minor groove by an N-terminal arm. The three complexes share similar overall features, but they also exhibit significant differences in DNA interactions. Because these differences may distinguish the biological activities of different classes of homeodomains, we have investigated the contribution of the Oct-2 POU-specific homeodomain (POUHD) to the specificity of the bipartite POU motif. Comparative studies of variant protein-DNA complexes demonstrate the following. (i) Mutations in an invariant residue in the POUHD HTH (N347; residue 10 of the putative recognition alpha-helix) reduce octamer binding with the relaxation of specificity at one position (5'-ATGCAAAT). The inferred HTH side chain-base interaction, although not observed in the solution structure of the Antennapedia complex, is in accord with homologous contacts in the Engrailed and MAT alpha 2 cocrystal structures. (ii) Comparison of the DNA-binding properties of POU and POUHD demonstrates that POUs and POUHD independently regulate specificity at opposite ends of the DNA site (5'-TATGCAAAT). Both domains contact the two central bases (5'-TATGCAAAT) where coordinate binding of POUS in the major groove overrides the intrinsic specificity of POUHD in the minor groove. (iii) The differential sensitivity of POU and POUHD to 2'-deoxyinosine substitutions (a minor-groove modification) suggests that POUS binding repositions the POUHD N-terminal "arm".(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

同源结构域定义了一类广泛参与基因表达调控的转录因子家族。在三种代表性复合物(Engrailed、触角足蛋白和MATα2)中观察到,DNA识别在大沟中由一个螺旋-转角-螺旋(HTH)元件介导,在小沟中由一个N端臂介导。这三种复合物具有相似的整体特征,但在DNA相互作用方面也表现出显著差异。由于这些差异可能区分不同类同源结构域的生物学活性,我们研究了Oct-2 POU特异性同源结构域(POUHD)对二分体POU基序特异性的贡献。对变异蛋白-DNA复合物的比较研究表明如下:(i)POUHD HTH中一个不变残基(N347;假定识别α螺旋的第10位残基)的突变会降低八聚体结合,并使一个位置(5'-ATGCAAAT)的特异性松弛。推断的HTH侧链-碱基相互作用,尽管在触角足蛋白复合物的溶液结构中未观察到,但与Engrailed和MATα2共晶体结构中的同源接触一致。(ii)POU和POUHD的DNA结合特性比较表明,POUs和POUHD在DNA位点(5'-TATGCAAAT)的两端独立调节特异性。两个结构域都接触两个中央碱基(5'-TATGCAAAT),其中POUS在大沟中的协同结合优先于POUHD在小沟中的固有特异性。(iii)POU和POUHD对2'-脱氧肌苷取代(一种小沟修饰)的不同敏感性表明,POUS结合会重新定位POUHD的N端“臂”。(摘要截短于250字)

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