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大鼠BLOS2/Ceap(一种假定的酵母She3同源物)作为凋亡拮抗转录因子/Che-1相互作用伴侣的特性分析。

Characterization of rat BLOS2/Ceap, a putative yeast She3 homolog, as interaction partner of apoptosis antagonizing transcription factor/Che-1.

作者信息

Felten Andrea, Leister Peter, Burgdorf Sven, Uhlmann Lutz, Scheidtmann Karl Heinz

机构信息

Institute of Genetics, University of Bonn, Roemerstr. 164, D-53117 Bonn, Germany.

出版信息

Biol Chem. 2007 Jun;388(6):569-82. doi: 10.1515/BC.2007.073.

Abstract

AATF/Che-1 is a coactivator of several transcription factors, including steroid hormone receptors. In search of novel interaction partners of AATF, we identified BLOS2 (BLOC1S2, also termed Ceap) from a rat cDNA library. BLOS2 is extremely conserved with a high degree of homology to yeast She3p. The clone isolated represents a splice variant encoding a polypeptide of 168 residues. Rat BLOS2 mRNA is highly expressed in brain and testis and at lower levels in other tissues, but not in skeletal or smooth muscle. Expression as a tagged fusion protein revealed predominant cytoplasmic, but also nuclear localization. In the cytoplasm, BLOS2 fusion proteins exhibit diffuse, filamentous, or dotted distribution, with the latter partially co-localizing with recycling endosomes. In addition, BLOS2 localizes to centrosomes or the pericentrosomal region. Moreover, BLOS2 co-localizes with myosin V globular tail domains in vesicle-like structures. However, a direct interaction could not be demonstrated. In transactivation assays, BLOS2 enhanced transcription from androgen receptor and p53-responsive promoters. However, this enhancement correlated with accumulation of both androgen receptor and p53, suggesting that BLOS2 has a stabilizing effect on these transcription factors. We propose that BLOS2 functions as an adapter in processes such as protein and vesicle processing and transport, and perhaps transcription.

摘要

AATF/Che-1是包括类固醇激素受体在内的多种转录因子的共激活因子。为了寻找AATF的新型相互作用伙伴,我们从大鼠cDNA文库中鉴定出了BLOS2(BLOC1S2,也称为Ceap)。BLOS2与酵母She3p具有高度同源性,极其保守。分离得到的克隆代表一种剪接变体,编码一个由168个残基组成的多肽。大鼠BLOS2 mRNA在脑和睾丸中高表达,在其他组织中表达水平较低,但在骨骼肌或平滑肌中不表达。作为带标签的融合蛋白表达时,显示主要定位于细胞质,但也有细胞核定位。在细胞质中,BLOS2融合蛋白呈现弥散、丝状或点状分布,后者部分与再循环内体共定位。此外,BLOS2定位于中心体或中心体周围区域。而且,BLOS2在囊泡样结构中与肌球蛋白V球状尾部结构域共定位。然而,未能证实直接相互作用。在反式激活试验中,BLOS2增强了雄激素受体和p53反应性启动子的转录。然而,这种增强与雄激素受体和p53的积累相关,表明BLOS2对这些转录因子具有稳定作用。我们提出,BLOS2在蛋白质和囊泡加工及运输等过程中,可能也在转录过程中起衔接子的作用。

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