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与CBP结合的9aaTAD家族的共享结构特征。

Shared structural features of the 9aaTAD family in complex with CBP.

作者信息

Piskacek Martin, Vasku Anna, Hajek Roman, Knight Andrea

机构信息

Department of Pathological Physiology, Faculty of Medicine, Masaryk University Brno, Czech Republic.

出版信息

Mol Biosyst. 2015 Mar;11(3):844-51. doi: 10.1039/c4mb00672k. Epub 2015 Jan 7.

Abstract

A number of transactivation domains for transcription factors including p53, E2A/HEB, MLL, cMyb, CREB, FOXO3, Gcn4, Oaf1 and Pdr1 have been reported to interact with the KIX domain of general transcriptional mediators CBP, p300 or MED15. Most of those factors belong to the already established Nine amino acid Transactivation Domain (9aaTAD) family. By using available structural data, we found binding analogy for the 9aaTAD in the MLL-KIX and also E2A/HEB-KIX complexes. We recognized two distinct TAD formations in the KIX complex. In the E2A/HEB-KIX complex, the leucine position is determined by the prolonged helical structure including the 9aaTAD and the leucine (long-helical TAD). However in the MLL-KIX complex, the equal position of 9aaTAD and proximal leucine is achieved differently by leucine-turn-helix structural architecture. Furthermore, the FOXO3-KIX complex shares structural analogy with the E2A-KIX complex in respect of both 9aaTAD and proximal leucine. Next, from (i) sequence alignment of the identified 9aaTADs in p53, E2A/HEB and MLL proteins and (ii) the resolved structure of the MLL-KIX and E2A/HEB-KIX complexes, we generated a plausible structural model for p53 that could be used also for other members of the 9aaTAD family. The position of 9aaTADs in Oaf1-, Pdr1- and Gcn4-MED15 KIX complexes and 9aaTAD composition are in good agreement with E2A, MLL, FOXO3 and p53. Analyses of structural data in this study define fundamental structural requirements and shed more light on the ambiguous 9aaTAD domain.

摘要

据报道,包括p53、E2A/HEB、MLL、cMyb、CREB、FOXO3、Gcn4、Oaf1和Pdr1在内的多种转录因子的反式激活结构域可与通用转录中介因子CBP、p300或MED15的KIX结构域相互作用。这些因子中的大多数属于已确立的九氨基酸反式激活结构域(9aaTAD)家族。通过使用现有的结构数据,我们在MLL-KIX以及E2A/HEB-KIX复合物中发现了9aaTAD的结合相似性。我们在KIX复合物中识别出两种不同的TAD结构形式。在E2A/HEB-KIX复合物中,亮氨酸位置由包括9aaTAD和亮氨酸的延长螺旋结构(长螺旋TAD)决定。然而,在MLL-KIX复合物中,9aaTAD和近端亮氨酸的等同位置是通过亮氨酸-转角-螺旋结构架构以不同方式实现的。此外,FOXO3-KIX复合物在9aaTAD和近端亮氨酸方面与E2A-KIX复合物具有结构相似性。接下来,通过(i)对p53、E2A/HEB和MLL蛋白中已鉴定的9aaTAD进行序列比对,以及(ii)解析MLL-KIX和E2A/HEB-KIX复合物的结构,我们生成了一个合理的p53结构模型,该模型也可用于9aaTAD家族的其他成员。Oaf1-、Pdr1-和Gcn4-MED15 KIX复合物中9aaTAD的位置以及9aaTAD组成与E2A、MLL、FOXO3和p53高度一致。本研究中的结构数据分析确定了基本的结构要求,并进一步阐明了模糊的9aaTAD结构域。

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