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哺乳动物Cux2蛋白的生化特性

Biochemical characterization of the mammalian Cux2 protein.

作者信息

Gingras Hélène, Cases Olivier, Krasilnikova Maria, Bérubé Ginette, Nepveu Alain

机构信息

Molecular Oncology Group, McGill University Health Center, Canada; Department of Biochemistry, McGill University, Canada.

出版信息

Gene. 2005 Jan 3;344:273-85. doi: 10.1016/j.gene.2004.11.008. Epub 2004 Dec 10.

Abstract

The CCAAT displacement protein (CDP) and cux (Cut homeobox) genes were originally identified as the human and mouse orthologs of Drosophila melanogaster cut. More recently, vertebrates were found to possess a second cut orthologs that was generated by gene duplication: Cux2. We report the initial biochemical characterization of the Cux2 protein in tissue culture and in vitro. We generated four polyclonal antibodies that were able to recognize the human and mouse Cux2 protein but displayed little or no cross-reactivity towards CDP1 and Cux1. The expression of the Cux2 protein was convincingly detected in only one among 19 neuronal cell lines: the SH-SY5Y human neuroblastoma cell line. CDP/Cux proteins contain four DNA binding domains, three Cut repeat (CR1, CR2 and CR3) and one Cut homeodomain (HD). Purified fusion proteins containing either CR1CR2, CR2CR3HD or CR3HD exhibited similar DNA binding specificities as the corresponding domains of Cux1, but their DNA binding kinetics were much more rapid. Similarly, the full-length Cux2 protein made rapid but transient interactions with DNA. We did not observe an N-terminally processed Cux2 isoform equivalent to the Cux1 p110 isoform. Whereas Cux1 can function as a repressor or activator in a promoter-specific manner, Cux2 functioned exclusively as a transcriptional repressor in NIH3T3 cells. Overall, our results suggest that the Cux1 and Cux2 proteins carry distinct biochemical functions. Cux2 is able, like Cux1, to perform the CCAAT-displacement activity. However, Cux2 is unlikely to execute transcriptional regulatory functions that require stable interaction with DNA.

摘要

CCAAT 位移蛋白(CDP)和 cux(Cut 同源框)基因最初被鉴定为果蝇 cut 的人类和小鼠直系同源基因。最近,发现脊椎动物拥有通过基因复制产生的第二个 cut 直系同源基因:Cux2。我们报告了 Cux2 蛋白在组织培养和体外的初步生化特性。我们制备了四种多克隆抗体,它们能够识别人类和小鼠的 Cux2 蛋白,但对 CDP1 和 Cux1 几乎没有或没有交叉反应性。在 19 种神经元细胞系中,仅在一种细胞系中令人信服地检测到了 Cux2 蛋白的表达:SH-SY5Y 人神经母细胞瘤细胞系。CDP/Cux 蛋白包含四个 DNA 结合结构域、三个 Cut 重复序列(CR1、CR2 和 CR3)和一个 Cut 同源结构域(HD)。含有 CR1CR2、CR2CR3HD 或 CR3HD 的纯化融合蛋白表现出与 Cux1 相应结构域相似的 DNA 结合特异性,但其 DNA 结合动力学要快得多。同样,全长 Cux2 蛋白与 DNA 进行快速但短暂的相互作用。我们没有观察到与 Cux1 p110 异构体等效的 N 端加工的 Cux2 异构体。虽然 Cux1 可以以启动子特异性方式作为阻遏物或激活物发挥作用,但 Cux2 在 NIH3T3 细胞中仅作为转录阻遏物发挥作用。总体而言,我们的结果表明 Cux1 和 Cux2 蛋白具有不同的生化功能。Cux2 能够像 Cux1 一样执行 CCAAT 位移活性。然而,Cux2 不太可能执行需要与 DNA 稳定相互作用的转录调节功能。

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