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首页> 外文期刊>Biochemical and Biophysical Research Communications >Molecular cloning and functional characterization of a mouse gene upregulated by lipopolysaccharide treatment reveals alternative splicing.
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Molecular cloning and functional characterization of a mouse gene upregulated by lipopolysaccharide treatment reveals alternative splicing.

机译:通过脂多糖处理上调的小鼠基因的分子克隆和功能表征揭示了可变剪接。

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摘要

Treatment of mouse cells with lipopolysaccharide (LPS) potently initiates an inflammatory response, but the underlying mechanisms are unclear. We therefore sought to characterize cDNA sequences of a new mouse LPS-responsive gene, and to evaluate the effects of MLrg. Full-length cDNAs were obtained from LPS-treated NIH3T3 cells. We report that the MLrg gene produces two alternative splice products (GenBank Accession Nos. DQ316984 and DQ320011), respectively, encoding MLrgW and MLrgS polypeptides. Both proteins contain zinc finger and leucine zipper domains and are thus potential regulators of transcription. Expression of MLrgW and MLrgS were robustly upregulated following LPS treatment, and the proteins were localized predominantly in the nuclear membrane and cytoplasm. In stable transfectants over-expressing MLrgW the proportion of cells in G1 phase was significantly reduced, while in cells over-expressing MLrgS the proportion of cells in G2 was significantly increased; both proteins are thus potential regulators of cell cycle progression. Upregulation of MLrgW and MLrgS may be an important component of the LPS inflammatory pathway and of the host response to infection with GNB.
机译:用脂多糖(LPS)处理小鼠细胞可有效引发炎症反应,但其潜在机制尚不清楚。因此,我们寻求表征新的小鼠LPS反应基因的cDNA序列,并评估MLrg的作用。从LPS处理的NIH3T3细胞获得全长cDNA。我们报告说,MLrg基因产生两个替代剪接产物(GenBank登录号DQ316984和DQ320011),分别编码MLrgW和MLrgS多肽。两种蛋白质均含有锌指和亮氨酸拉链结构域,因此是潜在的转录调节因子。 LPS处理后,MLrgW和MLrgS的表达被强烈上调,并且蛋白质主要位于核膜和细胞质中。在过表达MLrgW的稳定转染子中,G1期细胞的比例显着降低,而在过表达MLrgS的细胞中,G2期的细胞比例显着增加。因此,两种蛋白都是细胞周期进程的潜在调节剂。 MLrgW和MLrgS的上调可能是LPS炎症途径和宿主对GNB感染反应的重要组成部分。

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