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MADS因子AGL15中的转录抑制基序参与组蛋白去乙酰化酶复合体组分的募集。

A transcriptional repression motif in the MADS factor AGL15 is involved in recruitment of histone deacetylase complex components.

作者信息

Hill Kristine, Wang Huai, Perry Sharyn E

机构信息

Department of Plant and Soil Sciences, University of Kentucky, Lexington, KY 40546-0312, USA.

出版信息

Plant J. 2008 Jan;53(1):172-85. doi: 10.1111/j.1365-313X.2007.03336.x. Epub 2007 Nov 12.

Abstract

AGAMOUS-like 15 (AGL15) encodes a MADS-domain transcription factor that is preferentially expressed in the plant embryo. A number of direct downstream targets of AGL15 have been identified, and although some of these target genes are induced in response to AGL15, others are repressed. Additionally, direct target genes have been analyzed that exhibit strong association with AGL15 in vivo, yet in vitro AGL15 binds only weakly. These data suggest that AGL15 may form complexes with other proteins, thus modulating the specificity and function of AGL15 in planta. Here we report that AGL15 interacts with members of the SWI-independent 3/histone deacetylase (SIN3/HDAC) complex, and that AGL15 target genes are also responsive to an AGL15 interacting protein that is also a member of this complex, SIN3-associated polypeptide of 18 kDa (SAP18). AGL15 can repress transcription in vivo, and a region essential to this repressive function contains a motif that is conserved among putative orthologs of AGL15. This motif mediates the association of AGL15 with SAP18, thus providing a possible mechanism for the role of AGL15 in regulating gene expression via recruitment of an HDAC complex.

摘要

类AGAMOUS 15(AGL15)编码一种MADS结构域转录因子,该因子在植物胚胎中优先表达。已鉴定出多个AGL15的直接下游靶标,尽管其中一些靶标基因是响应AGL15而被诱导的,但其他一些则被抑制。此外,还分析了在体内与AGL15表现出强关联的直接靶标基因,然而在体外AGL15的结合较弱。这些数据表明AGL15可能与其他蛋白质形成复合物,从而调节AGL15在植物中的特异性和功能。在此我们报告AGL15与SWI非依赖型3/组蛋白去乙酰化酶(SIN3/HDAC)复合物的成员相互作用,并且AGL15靶标基因也对一种也是该复合物成员的AGL15相互作用蛋白——18 kDa的SIN3相关多肽(SAP18)有反应。AGL15在体内可抑制转录,这种抑制功能所必需的一个区域包含一个在AGL15的假定直系同源物中保守的基序。该基序介导AGL15与SAP18的关联,从而为AGL15通过招募HDAC复合物来调节基因表达的作用提供了一种可能的机制。

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