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首页> 外文期刊>Molecular Biotechnology >Identification of Novel Cyclic Nucleotide Phosphodiesterase Gene cDNAs in the Cochlea of Guinea Pig (Cavia porcellus) Through Conserved Homologous Sequences
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Identification of Novel Cyclic Nucleotide Phosphodiesterase Gene cDNAs in the Cochlea of Guinea Pig (Cavia porcellus) Through Conserved Homologous Sequences

机译:通过保守的同源序列鉴定豚鼠耳蜗中新的环状核苷酸磷酸二酯酶基因cDNA。

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The nitric oxide (NO) signaling pathway plays a critical role in auditory signal conversion and transduction. Cyclic nucleotide phosphodiesterase (PDE), an important component of the NO signaling pathway, has not been identified in the cochlea. Using cross-species comparison, homologous sequences of human and mouse Pde coding sequences were searched in a guinea pig genomic database and conserved homologous exons were found between human and mouse homologous sequences. Based on reverse-transcription PCR of these conserved regions, six partial Pde cDNAs were detected in the cochlea: CpPde3a, CpPde4d, CpPde8a, CpPde8b, CpPde9a, and CpPde11a. The identity rates of the six partial Pde cDNA sequences between guinea pig and human range from 83.8 to 95.5% and those of the peptide sequences range from 85.6 to 100%. The identity rates of the six Pde cDNA sequences between guinea pig and mouse range from 80.6 to 93.0% and those of peptide sequences range from 79.5 to 99.2%. The results demonstrate that multiple Pde genes are expressed in the cochlea, suggesting a NO pathway in the auditory system. Insights into this pathway will help to develop new therapeutic drugs on auditory abnormalities.
机译:一氧化氮(NO)信号通路在听觉信号转换和转导中起关键作用。环核苷酸磷酸二酯酶(PDE),NO信号通路的重要组成部分,尚未在耳蜗中鉴定。使用种间比较,在豚鼠基因组数据库中搜索人和小鼠Pde编码序列的同源序列,并在人和小鼠同源序列之间找到保守的同源外显子。基于这些保守区的逆转录PCR,在耳蜗中检测到六个部分Pde cDNA:CpPde3a,CpPde4d,CpPde8a,CpPde8b,CpPde9a和CpPde11a。豚鼠与人之间的六个部分Pde cDNA序列的同一性率为83.8至95.5%,而这些肽序列的同一性率为85.6至100%。豚鼠和小鼠之间的六个Pde cDNA序列的同一性率为80.6至93.0%,而肽序列的同一性率为79.5至99.2%。结果表明,在耳蜗中表达了多种Pde基因,提示听觉系统中存在NO途径。对该途径的深入了解将有助于开发针对听觉异常的新治疗药物。

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