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ZNF74多手指基因的可变启动子使用和剪接产生具有不同抑制活性和核定位的蛋白质异构体。

Alternative promoter usage and splicing of ZNF74 multifinger gene produce protein isoforms with a different repressor activity and nuclear partitioning.

作者信息

Côté F, Boisvert F M, Grondin B, Bazinet M, Goodyer C G, Bazett-Jones D P, Aubry M

机构信息

Département de Biochimie, Université de Montréal, Montréal, Québec, Canada.

出版信息

DNA Cell Biol. 2001 Mar;20(3):159-73. doi: 10.1089/104454901300069004.

Abstract

We have previously shown that ZNF74, a candidate gene for DiGeorge syndrome, encodes a developmentally expressed zinc finger gene of the Kruppel-associated box (KRAB) multifinger subfamily. Using RACE, RT-PCR, and primer extension on human fetal brain and heart mRNAs, we here demonstrate the existence of six mRNA variants resulting from alternative promoter usage and splicing. These transcripts encode four protein isoforms differing at their N terminus by the composition of their KRAB motif. One isoform, ZNF74-I, which corresponds to the originally cloned cDNA, was found to be encoded by two additional mRNA variants. This isoform, which contains a KRAB motif lacking the N terminus of the KRAB A box, was devoid of transcriptional activity. In contrast, ZNF74-II, a newly identified form of the protein that is encoded by a single transcript and contains an intact KRAB domain with full A and B boxes, showed strong repressor activity. Deconvolution immunofluorescence microscopy using transfected human neuroblastoma cells and nonimmortalized HS68 fibroblasts revealed a distinct subcellular distribution for ZNF74-I and ZNF74-II. In contrast to ZNF74-I, which largely colocalizes with SC-35 in nuclear speckles enriched in splicing factors, the transcriptionally active ZNF74-II had a more diffuse nuclear distribution that is more characteristic of transcriptional regulators. Taken with the previously described RNA-binding activity of ZNF74-I and direct interaction with a hyperphosphorylated form of the RNA polymerase II participating in pre-mRNA processing, our results suggest that the two ZNF74 isoforms exert different or complementary roles in RNA maturation and in transcriptional regulation.

摘要

我们之前已经表明,锌指蛋白74(ZNF74)作为DiGeorge综合征的一个候选基因,编码一种在发育过程中表达的锌指基因,属于Kruppel相关盒(KRAB)多锌指亚家族。通过对人类胎儿脑和心脏mRNA进行快速扩增cDNA末端(RACE)、逆转录聚合酶链反应(RT-PCR)和引物延伸实验,我们在此证明了由于启动子使用和剪接方式不同而产生的六种mRNA变体的存在。这些转录本编码四种蛋白质异构体,它们在N端的KRAB基序组成上有所不同。一种异构体ZNF74-I,与最初克隆的cDNA相对应,被发现由另外两种mRNA变体编码。这种异构体包含一个缺少KRAB A盒N端的KRAB基序,没有转录活性。相比之下,ZNF74-II是一种新鉴定的蛋白质形式,由单一转录本编码,包含一个完整的KRAB结构域以及完整的A盒和B盒,具有很强的抑制活性。利用转染的人类神经母细胞瘤细胞和未永生化的HS68成纤维细胞进行的去卷积免疫荧光显微镜观察显示,ZNF74-I和ZNF74-II具有不同的亚细胞分布。与主要在富含剪接因子的核斑点中与剪接因子SC-35共定位的ZNF74-I不同,具有转录活性的ZNF74-II在细胞核中的分布更为弥散,这更具转录调节因子的特征。结合之前描述的ZNF74-I的RNA结合活性以及与参与前体mRNA加工的超磷酸化形式的RNA聚合酶II的直接相互作用,我们的结果表明这两种ZNF74异构体在RNA成熟和转录调节中发挥不同或互补的作用。

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