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GAGA蛋白:一种多面转录因子。

GAGA protein: a multi-faceted transcription factor.

作者信息

Adkins Nicholas L, Hagerman Thomas A, Georgel Philippe

机构信息

Department of Biological Sciences, Marshall University, 1 John Marshall Drive, Huntington, WV, 25755, USA.

出版信息

Biochem Cell Biol. 2006 Aug;84(4):559-67. doi: 10.1139/o06-062.

Abstract

The transition from transcription activation to repression is regulated at multiple levels by the DNA sequence and DNA modification to its compaction through chromatin packaging. The GAGA factor (GAF) is one of a few transcription factors that can regulate gene expression at multiple levels. It displays both activator/antirepressor and repressor activity, depending on its target genomic location. The GAF-mediated modulation of expression appears to be intimately linked with modifications of the chromatin structure. The GAF can associate with highly compacted heterochromatin, contributing to gene repression, or participate in nucleosome remodeling to activate specific genes. In this review, we are attempting to elucidate the contribution(s) of the various domains of the GAF to the recruitment of its functional partners, leading to seemingly opposite functions. We surveyed the current scientific literature for evidence of GAF involvement in regulatory events associated with changes of chromatin composition or conformation.

摘要

从转录激活到抑制的转变在多个层面受到调控,包括DNA序列、DNA修饰以及通过染色质包装对其压缩程度的影响。GAGA因子(GAF)是少数能够在多个层面调控基因表达的转录因子之一。根据其在基因组中的靶向位置,它既表现出激活剂/抗阻遏物活性,也表现出阻遏物活性。GAF介导的表达调控似乎与染色质结构的修饰密切相关。GAF可以与高度压缩的异染色质结合,导致基因抑制,或者参与核小体重塑以激活特定基因。在本综述中,我们试图阐明GAF各个结构域对其功能伙伴招募的贡献,这些贡献导致了看似相反的功能。我们查阅了当前的科学文献,以寻找GAF参与与染色质组成或构象变化相关调控事件的证据。

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