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人类c-Abl酪氨酸激酶的DNA结合结构域优先结合含有AAC基序的DNA序列以及扭曲的DNA结构。

The DNA binding domain of the human c-Abl tyrosine kinase preferentially binds to DNA sequences containing an AAC motif and to distorted DNA structures.

作者信息

David-Cordonnier M H, Hamdane M, Bailly C, D'Halluin J C

机构信息

INSERM U 124 Onco-hématologie Moléculaire, Institut de Recherches sur le Cancer de Lille, France.

出版信息

Biochemistry. 1998 Apr 28;37(17):6065-76. doi: 10.1021/bi973030w.

Abstract

The c-Abl tyrosine kinase protein is implicated in the signaling pathway as well as in transcription, DNA repair, apoptosis, and several other vital biological processes essential for cell proliferation or differentiation. The interaction of c-Abl with DNA is important for some of these functions, but the exact nature of this interaction is still a matter of controversy. The present study addresses the DNA-binding properties of the human c-Abl protein. Using CASTing experiments, the consensus binding site 5'-AA/CAACAAA/C was determined. The central highly conserved AAC triplet appears to constitute the crucial core element in the binding sequences of the c-Abl protein. The c-Abl DNA-binding domain recognizes specific sequences and interacts with deformed DNA structures such as four-way junctions and bubble DNA containing a large single-stranded loop, as determined by electromobility shift assay, melting temperature studies, and binding to specific oligonucleotides covalently linked to beads. Additional competition experiments suggest that the interaction mainly involves contacts within the minor groove of the double helix. The DNA-binding properties of c-Abl are reminiscent of those of high-mobility group (HMG)-like proteins such as LEF-1 and SRY. However, the circular permutation and ring closure assays and DNA unwinding experiments reveal that, unlike HMGs, c-Abl does not bend its target sequence. In addition, it is shown that the protein potentiates the DNA relaxation activity of topoisomerase I. These findings indicate that the interaction of c-Abl with DNA is both sequence-selective and structure-dependent.

摘要

c-Abl酪氨酸激酶蛋白参与信号通路以及转录、DNA修复、细胞凋亡和其他几个对细胞增殖或分化至关重要的重要生物学过程。c-Abl与DNA的相互作用对其中一些功能很重要,但这种相互作用的确切性质仍存在争议。本研究探讨了人类c-Abl蛋白的DNA结合特性。通过CASTing实验,确定了共有结合位点5'-AA/CAACAAA/C。中央高度保守的AAC三联体似乎构成了c-Abl蛋白结合序列中的关键核心元件。如通过电泳迁移率变动分析、解链温度研究以及与共价连接到珠子上的特定寡核苷酸结合所确定的,c-Abl DNA结合结构域识别特定序列并与变形的DNA结构相互作用,如四向连接和含有大的单链环的气泡DNA。额外的竞争实验表明,这种相互作用主要涉及双螺旋小沟内的接触。c-Abl的DNA结合特性让人联想到高迁移率族(HMG)样蛋白,如LEF-1和SRY。然而,环形置换和环闭合分析以及DNA解旋实验表明,与HMG不同,c-Abl不会弯曲其靶序列。此外,研究表明该蛋白增强了拓扑异构酶I的DNA松弛活性。这些发现表明,c-Abl与DNA的相互作用既是序列选择性的,也是结构依赖性的。

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