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小鼠第五补体成分(C5)缺陷。5'-外显子中的2个碱基对基因缺失。

Deficiency of the murine fifth complement component (C5). A 2-base pair gene deletion in a 5'-exon.

作者信息

Wetsel R A, Fleischer D T, Haviland D L

机构信息

Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Biol Chem. 1990 Feb 15;265(5):2435-40.

PMID:2303408
Abstract

To ascertain the molecular mechanism that causes murine C5 deficiency, genomic and cDNA libraries were constructed from mouse liver DNA and mRNA employing the congenic strains B10.D2/nSnJ and B10.D2/oSnJ that are sufficient and deficient for C5, respectively. Genomic fragments were isolated which correspond to PvuII and HindIII restriction fragment length polymorphisms associated with C5 deficiency. Sequence analyses demonstrated that each of these polymorphisms resulted from single base pair substitutions and that neither substitution would probably cause or contribute to the C5 deficiency. Sequence analyses of C5 sufficient and deficient cDNAs revealed a 2 base-pair deletion in the deficient cDNAs. The "TA" deletion was located near the 5' end of the cDNA. This deletion shifts the reading frame of the C5 mRNA so that the termination codon UGA is present 4 base pairs downstream from the deletion. Genomic DNA was amplified and sequenced corresponding to the area surrounding the 2-base pair deletion. Six C5-deficient strains, A/HeJ, AKR/J, DBA/2J, NZB/B1NJ, SWR/J, and B10.D2/oSnJ, and four C5-sufficient strains, Balb/CJ, C57Bl/6J, DBA/1J, and B10.D2/nSnJ, were analyzed. The sequencing data revealed that the 2 base pairs were deleted from the C5 gene of each deficient mouse tested but not from the C5 gene of any sufficient mouse. These data demonstrate that: 1) there is an identical 2-base pair deletion in an exon of the C5 gene in several different C5-deficient mouse strains; 2) the mRNA transcribed from the C5D gene retains this deletion; and 3) this mutation should result in C5 protein deficiency.

摘要

为确定导致小鼠C5缺乏的分子机制,分别利用对C5充足和缺乏的同源近交系B10.D2/nSnJ和B10.D2/oSnJ,从小鼠肝脏DNA和mRNA构建了基因组文库和cDNA文库。分离出了与C5缺乏相关的PvuII和HindIII限制性片段长度多态性对应的基因组片段。序列分析表明,这些多态性中的每一种都是由单碱基对替换引起的,并且这两种替换都不太可能导致或促成C5缺乏。对C5充足和缺乏的cDNA进行的序列分析显示,缺乏的cDNA中有一个2碱基对的缺失。“TA”缺失位于cDNA的5'端附近。这种缺失使C5 mRNA的阅读框发生移位,从而使终止密码子UGA出现在缺失下游4个碱基对处。对与2碱基对缺失周围区域对应的基因组DNA进行了扩增和测序。分析了6个C5缺乏品系,即A/HeJ、AKR/J、DBA/2J、NZB/B1NJ、SWR/J和B10.D2/oSnJ,以及4个C5充足品系,即Balb/CJ、C57Bl/6J、DBA/1J和B10.D2/nSnJ。测序数据显示,在每个测试的缺乏小鼠的C5基因中都缺失了2个碱基对,而在任何充足小鼠的C5基因中都没有缺失。这些数据表明:1)在几种不同的C5缺乏小鼠品系的C5基因外显子中存在相同的2碱基对缺失;2)从C5D基因转录的mRNA保留了这种缺失;3)这种突变应导致C5蛋白缺乏。

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