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牛肝低分子量激肽原前体及其两种信使核糖核酸的一级结构

Primary structures of bovine liver low molecular weight kininogen precursors and their two mRNAs.

作者信息

Nawa H, Kitamura N, Hirose T, Asai M, Inayama S, Nakanishi S

出版信息

Proc Natl Acad Sci U S A. 1983 Jan;80(1):90-4. doi: 10.1073/pnas.80.1.90.

Abstract

By using a mixture of synthetic oligodeoxyribonucleotides as a probe, cloned cDNA sequences specific for low molecular weight (LMW) kininogen have been isolated from a cDNA library of bovine liver mRNA sequences. Nucleotide sequence analyses of cloned cDNA inserts have revealed that bovine liver LMW kininogens are encoded by at least two very similar but distinct mRNAs. The corresponding amino acid sequences show that the LMW kininogen precursors of the two types, composed of 436 and 434 amino acid residues, both contain two internally homologous sequences in the amino-terminal portion between a signal peptide and a bradykinin moiety. The two mRNAs exhibit 15 nucleotide substitutions and 6 nucleotide deletions/additions in their protein-coding regions. The replacement of 13 amino acid residues and the deletions/additions of 2 amino acid residues in the two LMW kininogen precursors are all localized within the internally homologous regions, implying that these regions may be biologically significant in relation to the existence of two LMW kininogens. The nucleotide changes in the two mRNAs also occur in the limited portions that principally encode the internally homologous amino acid sequences. This suggests that the mRNAs are transcribed from the same gene to generate two LMW kininogen precursors differing only in the internally homologous sequences.

摘要

通过使用合成寡脱氧核糖核苷酸混合物作为探针,已从牛肝mRNA序列的cDNA文库中分离出低分子量(LMW)激肽原特异的克隆cDNA序列。对克隆的cDNA插入片段的核苷酸序列分析表明,牛肝LMW激肽原由至少两种非常相似但不同的mRNA编码。相应的氨基酸序列显示,这两种类型的LMW激肽原前体分别由436和434个氨基酸残基组成,在信号肽和缓激肽部分之间的氨基末端部分均包含两个内部同源序列。这两种mRNA在其蛋白质编码区表现出15个核苷酸替换和6个核苷酸缺失/添加。两种LMW激肽原前体中13个氨基酸残基的替换以及2个氨基酸残基的缺失/添加均位于内部同源区域内,这意味着这些区域可能与两种LMW激肽原的存在具有生物学意义。两种mRNA中的核苷酸变化也发生在主要编码内部同源氨基酸序列的有限部分。这表明这些mRNA是从同一基因转录而来,以产生仅在内部同源序列上不同的两种LMW激肽原前体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f845/393315/fb15634bb00d/pnas00627-0106-a.jpg

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