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小鼠B型利钠肽基因的结构、表达及基因组定位

Structure, expression, and genomic mapping of the mouse natriuretic peptide type-B gene.

作者信息

Steinhelper M E

机构信息

Krannert Institute of Cardiology, Department of Medicine, Indiana University School of Medicine, Indianapolis.

出版信息

Circ Res. 1993 May;72(5):984-92. doi: 10.1161/01.res.72.5.984.

Abstract

The structure of the mouse natriuretic peptide type-B (BNP) gene was determined by isolating and sequencing genomic clones. The mouse BNP gene was structurally similar to other natriuretic peptide genes and comprised three exons and two introns. Expression of the mouse BNP gene was found only in cardiac tissue as determined by ribonuclease protection analyses. Initiation of transcription was 31 bp downstream from a consensus TATA box as determined by primer extension analysis of cardiac RNA. Comparative DNA sequence analysis identified several DNA elements with potential transcriptional regulatory function. Comparative amino acid sequence analysis showed that the N-terminal portion of the mouse and rat BNP precursors was more conserved than the C-terminal 45-amino-acid sequence that constitute the bioactive BNP-45 peptide. The proteolytic processing site (RXXR-S) generating bioactive BNPs was highly conserved among all BNP precursors and was identical to the consensus site of furin, a calcium-dependent serine endoprotease. Finally, the BNP gene was mapped using recombinant inbred DNA and a polymerase chain reaction-based restriction fragment-length polymorphism assay to mouse chromosome 4 near the atrial natriuretic factor (Anf) locus. No recombination event between Bnp and Anf was evident in the 39 recombinant inbred and inbred strains examined. This physical linkage between the two natriuretic peptide genes expressed in cardiac tissue may be important for their transcriptional regulation.

摘要

通过分离和测序基因组克隆来确定小鼠B型利钠肽(BNP)基因的结构。小鼠BNP基因在结构上与其他利钠肽基因相似,由三个外显子和两个内含子组成。通过核糖核酸酶保护分析确定,小鼠BNP基因仅在心脏组织中表达。通过对心脏RNA进行引物延伸分析确定,转录起始于一个共有TATA框下游31 bp处。比较DNA序列分析鉴定出几个具有潜在转录调控功能的DNA元件。比较氨基酸序列分析表明,小鼠和大鼠BNP前体的N端部分比构成生物活性BNP-45肽的C端45个氨基酸序列更保守。产生生物活性BNP的蛋白水解加工位点(RXXR-S)在所有BNP前体中高度保守,并且与钙依赖性丝氨酸内切蛋白酶弗林蛋白酶的共有位点相同。最后,使用重组近交DNA和基于聚合酶链反应的限制性片段长度多态性分析将BNP基因定位到小鼠第4号染色体上靠近心钠素(Anf)基因座的位置。在所检测的39个重组近交系和近交系中,Bnp和Anf之间没有明显的重组事件。这两个在心脏组织中表达的利钠肽基因之间的物理连锁可能对它们的转录调控很重要。

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