首页> 外文OA文献 >Gene expression of the dibasic-pair cleaving enzyme NRD convertase (N-arginine dibasic convertase) is differentially regulated in the GH3 pituitary and Mat-Lu prostate cell lines.
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Gene expression of the dibasic-pair cleaving enzyme NRD convertase (N-arginine dibasic convertase) is differentially regulated in the GH3 pituitary and Mat-Lu prostate cell lines.

机译:在GH3垂体和Mat-Lu前列腺细胞系中,双碱基对裂解酶NRD转化酶(N-精氨酸双碱基转化酶)的基因表达受到差异调节。

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摘要

NRD convertase (N-arginine dibasic convertase, NRD-C) is a dibasic selective metalloprotease which cleaves on the N-terminal side of an arginine residue in a dibasic pair. Abundant in endocrine tissues, the highest levels are found in testis. The mechanism whereby NRD-C expression is regulated at the transcriptional level has been examined by reporter-gene assay and electrophoretic-mobility-shift assays. Analysis of the rat and human promoters show that they are highly conserved, containing a number of motifs which may correspond to transcription-factor binding sites. The rat promoter has been cloned into a luciferase reporter vector and analysed in a number of cell lines. Full functionality of the promoter is observed with 5' deletions to 411 bp upstream of the transcriptional start site in spermatid, prostate and pituitary cell lines. Further deletion to 101 bp causes a complete loss of activity in spermatid and prostate lines. By contrast, GH3 pituitary cells display no reduction in promoter activity with deletion to 101 bp of upstream sequence. A number of transcription-factor binding sites have been identified by electrophoretic-mobility-shift assays in the region 411-101; however, no differences in binding between the cell lines were observed.
机译:NRD转化酶(N-精氨酸二元转化酶,NRD-C)是在二元对中精氨酸残基的N端侧切割的二元选择性金属蛋白酶。内分泌组织丰富,睾丸中含量最高。 NRD-C表达在转录水平调控的机制已通过报道基因检测和电泳迁移率检测进行了研究。对大鼠和人类启动子的分析表明,它们是高度保守的,含有许多可能与转录因子结合位点相对应的基序。大鼠启动子已经克隆到萤光素酶报告载体中,并在许多细胞系中进行了分析。在精子,前列腺和垂体细胞系中,在转录起始位点上游411 bp处有5'缺失,观察到启动子的全部功能。进一步缺失至101 bp会导致精子和前列腺细胞完全丧失活性。相比之下,GH3垂体细胞显示缺失101 bp的上游序列,启动子活性未降低。已经通过区域411-101中的电泳迁移率分析确定了许多转录因子结合位点;然而,没有观察到细胞系之间的结合差异。

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  • 作者

    Winter, A G; Pierotti, A R;

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  • 年度 2000
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  • 正文语种 en
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