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与白血病相关的AML1(Runx1)-CBFβ复合物作为一种DNA诱导的分子钳发挥作用。

The leukemia-associated AML1 (Runx1)--CBF beta complex functions as a DNA-induced molecular clamp.

作者信息

Bravo J, Li Z, Speck N A, Warren A J

机构信息

MRC Laboratory of Molecular Biology, Hills Road, Cambridge CB2 2QH, UK.

出版信息

Nat Struct Biol. 2001 Apr;8(4):371-8. doi: 10.1038/86264.

Abstract

We have determined the structure, at 2.6 A resolution, of the AML1 (Runx1) Runt domain--CBF beta--DNA ternary complex, the most common target for mutations in human leukemia. The structure reveals that the Runt domain DNA binding mechanism is unique within the p53 family of transcription factors. The extended C-terminal 'tail' and 'wing' elements adopt a specific DNA-bound conformation that clamps the phosphate backbone between the major and minor grooves of the distorted B-form DNA recognition site. Furthermore, the extended 'tail' mediates most of the NF-kappa B/Rel-like base-specific contacts in the major groove. The structure clearly explains the molecular basis for the loss of DNA binding function of the Runt domain--CBF beta complex as a consequence of the human disease-associated mutations in leukemogenesis and cleidocranial dysplasia.

摘要

我们已经确定了AML1(Runx1) Runt结构域-CBFβ-DNA三元复合物的结构,分辨率为2.6埃,该复合物是人类白血病中最常见的突变靶点。该结构表明,Runt结构域的DNA结合机制在p53转录因子家族中是独特的。延伸的C末端“尾巴”和“翅膀”元件采用特定的DNA结合构象,将磷酸主链夹在扭曲的B型DNA识别位点的大沟和小沟之间。此外,延伸的“尾巴”介导了大沟中大部分NF-κB/Rel样碱基特异性接触。该结构清楚地解释了在白血病发生和锁骨颅骨发育不全中与人类疾病相关的突变导致Runt结构域-CBFβ复合物DNA结合功能丧失的分子基础。

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