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人羧肽酶M基因的结构。富含GC的近端启动子和由重复元件组成的独特远端启动子的鉴定。

Structure of the human carboxypeptidase M gene. Identification of a proximal GC-rich promoter and a unique distal promoter that consists of repetitive elements.

作者信息

Li Jingqiu, Rehli Michael, Timblin Barbara, Tan Fulong, Krause Stefan W, Skidgel Randal A

机构信息

Department of Pharmacology, University of Illinois College of Medicine, 835 S. Wolcott, Chicago, IL 60612, USA.

出版信息

Gene. 2002 Feb 6;284(1-2):189-202. doi: 10.1016/s0378-1119(01)00898-8.

Abstract

The human carboxypeptidase M (CPM) gene was found to encompass about 112.6 kb of genomic sequence, containing 11 exons of which eight (exons 2-9) are common to all transcripts and contain the entire coding region. We have cloned several alternative variants of CPM transcripts that result from differential promoter usage and alternative splicing. Although CPM belongs to the same metallocarboxypeptidase subfamily as CPE, their intron/exon structures differ significantly. Multiple transcription start sites were found in the CPM gene that cluster in two regions separated by about 30 kb and are flanked by two unique functional promoters. One ('proximal') is immediately upstream of the coding region and contains GC-rich sequences and a typical TATA box whereas the other ('distal') consists almost entirely of repetitive elements. Luciferase reporter assays with constructs of the promoter regions showed they were both quite active in several cell lines. However, the proximal promoter was much stronger than the distal one in two of the human cell lines tested (HepG2 and HEK293) whereas both promoters were highly and equally active in the human monocytic cell line THP-1, which has high constitutive expression of CPM.

摘要

人类羧肽酶M(CPM)基因被发现包含约112.6 kb的基因组序列,有11个外显子,其中8个(外显子2 - 9)为所有转录本所共有,且包含整个编码区。我们克隆了几种CPM转录本的可变变体,这些变体源于不同的启动子使用和可变剪接。虽然CPM与羧肽酶E(CPE)属于同一金属羧肽酶亚家族,但它们的内含子/外显子结构有显著差异。在CPM基因中发现了多个转录起始位点,这些位点聚集在两个相隔约30 kb的区域,两侧各有一个独特的功能性启动子。一个(“近端”)位于编码区紧邻上游,含有富含GC的序列和一个典型的TATA盒,而另一个(“远端”)几乎完全由重复元件组成。对启动子区域构建体进行的荧光素酶报告基因检测表明,它们在几种细胞系中都相当活跃。然而,在测试的两种人类细胞系(HepG2和HEK293)中,近端启动子比远端启动子强得多,而在具有高CPM组成型表达的人类单核细胞系THP - 1中,两种启动子都高度且同等活跃。

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