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KIR2DL1 中间上游元件参与基因激活。

The KIR2DL1 intermediate upstream element participates in gene activation.

机构信息

Basic Science Program, Frederick National Laboratory for Cancer Research, Frederick, MD, 21702, USA.

Cancer Innovation Laboratory, Center for Cancer Research, NCI, Frederick, MD, 21702, USA.

出版信息

Immunogenetics. 2023 Dec;75(6):495-506. doi: 10.1007/s00251-023-01321-9. Epub 2023 Oct 6.

Abstract

The human KIR genes encode a family of class I MHC receptors that are expressed on subsets of NK cells. The expression of KIR proteins is controlled by a stochastic process, and competition between sense and antisense promoter elements has been suggested to program the variegated expression of these genes. Previous studies have demonstrated distinct roles of distal, intermediate, and proximal sense promoter/enhancer elements in gene activation and expression. Conversely, proximal and intronic antisense promoter transcripts have been associated with gene silencing at different stages of NK cell development. In the current study, we examine the effect of intermediate promoter deletion on KIR2DL1 expression in the YTS cell line. Homozygous deletion of the KIR2DL1 intermediate element did not affect proximal promoter activity but resulted in increased detection of upstream transcripts. No significant changes in alternative mRNA splicing or expression levels of KIR2DL1 protein were observed. However, intermediate element deletion was associated with a reduced frequency of gene activation by 5-azacytidine. Taken together, these results indicate that the intermediate element is not an enhancer required for KIR expression; however, it is required for the efficient activation of the gene.

摘要

人类 KIR 基因编码一类 MHC I 类受体,这些受体表达在 NK 细胞亚群上。KIR 蛋白的表达受随机过程控制,并且已经提出了 sense 和 antisense 启动子元件之间的竞争来规划这些基因的斑驳表达。先前的研究表明,远端、中间和近端 sense 启动子/增强子元件在基因激活和表达中具有不同的作用。相反,近端和内含子 antisense 启动子转录物与 NK 细胞发育的不同阶段的基因沉默有关。在本研究中,我们研究了中间启动子缺失对 YTS 细胞系中 KIR2DL1 表达的影响。KIR2DL1 中间元件的纯合缺失不影响近端启动子活性,但导致上游转录物的检测增加。未观察到 KIR2DL1 蛋白的剪接方式或表达水平有显著变化。然而,中间元件缺失与 5-氮杂胞苷诱导基因激活的频率降低有关。总之,这些结果表明中间元件不是 KIR 表达所必需的增强子;然而,它是基因有效激活所必需的。

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