...
首页> 外文期刊>Biology of Sex Differences >Interference of kallikrein 1b26 (klk1b26) translation by microRNA specifically expressed in female mouse submandibular glands: an additional mechanism for sexual dimorphism of klk1b26 protein in the glands
【24h】

Interference of kallikrein 1b26 (klk1b26) translation by microRNA specifically expressed in female mouse submandibular glands: an additional mechanism for sexual dimorphism of klk1b26 protein in the glands

机译:特异性在雌性小鼠下颌下腺中表达的microRNA干扰激肽释放酶1b26(klk1b26)的翻译:腺体中klk1b26蛋白性二态的另一种机制

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background Mouse kallikrein 1b26 (klk1b26) protein is more abundant in male submandibular glands (SMGs) than in female ones. This sexual dimorphism has been thought to be due to increased mRNA synthesis stimulated by androgen. However, the klk1b26 protein level in female SMG is far less than that expected from the mRNA level, suggesting an additional mechanism for down-regulation of klk1b26 expression in female SMGs. Methods We examined the effects of small non-coding RNAs in mouse SMGs on in vitro translation of klk1b26 using a reticulocyte lysate system and reverse transcription (RT)-PCR for klk1b26 mRNA. Statistical analyses were performed with a computer package (Microsoft Excel). Results The microRNA (miRNA) preparation from female SMGs, but not male SMGs, interfered with the in vitro translation of the klk1b26 protein and inhibited the RT-PCR for klk1b26 mRNA with forward primers targeting its 5'-terminal region (between the 15th and 40th nucleotide from the 5'-terminal). The miRNA preparation from castrated mouse SMGs showed the inhibitory effect on the klk1b26 translation, but that from a 5α-dihydrotestosterone-treated female mouse SMGs did not. Synthetic miRNAs (miR-325 and miR-1497a), which have partial complementarity with klk1b26 mRNA at its 5'-terminal region (15th to 40th nucleotide position from the 5'-terminal), also interfered with the in vitro klk1b26 translation. When the female miRNA preparation was incubated with a 30-nucleotide-long single-strand oligoDNA (named [15th-44th]ssDNA, whose sequence corresponded to the 15th to 44th position from the 5'-terminal of klk1b26 mRNA) prior to the addition into the in vitro translation system, the inhibitory effect of the miRNA preparation on klk1b26 translation disappeared, while [15th-44th]ssDNA itself had no effect on the translation. Preincubation of the miRNA preparation with another single-strand DNA ([169th-198th]ssDNA, whose sequence corresponded with 169th to 198th position of klk1b26 mRNA) did not show the inhibitory effect. Conclusions The small non-coding RNA, most probably miRNA, specifically expressed in female mouse SMGs interfered with klk1b26 protein synthesis in the in vitro translation system. Therefore sexual dimorphism observed in klk1b26 expression in mouse SMGs is due at least in part to the female-specific small non-coding RNA in SMGs.
机译:背景小鼠激肽释放酶1b26(klk1b26)蛋白在男性下颌腺(SMG)中比在女性中更为丰富。该性二态性被认为是由于雄激素刺激的mRNA合成增加。但是,雌性SMG中的klk1b26蛋白水平远低于mRNA水平所预期的水平,这提示了下调雌性SMG中klk1b26表达的另一种机制。方法我们使用网状细胞裂解液系统和klk1b26 mRNA的逆转录(RT)-PCR技术,研究了小鼠SMG中小的非编码RNA对klk1b26体外翻译的影响。使用计算机软件包(Microsoft Excel)进行统计分析。结果从雌性SMGs而非雄性SMGs制备的microRNA(miRNA)干扰了klk1b26蛋白的体外翻译,并用靶向其5'末端区域(第15位至第15位至第15位至第15位至从5'端开始的第40个核苷酸)。 cast割的小鼠SMG的miRNA制备物对klk1b26的翻译具有抑制作用,而5α-二氢睾酮处理的雌性小鼠SMG则没有抑制作用。合成的miRNA(miR-325和miR-1497a)在其5'-末端区域(从5'-末端开始的第15至40个核苷酸位置)与klk1b26 mRNA具有部分互补性,也干扰了体外klk1b26的翻译。当将女性miRNA制剂与30个核苷酸长的单链寡核苷酸DNA(命名为[15th-44th] ssDNA,其序列对应于klk1b26 mRNA的5'端的第15至44位)一起孵育时,在体外翻译系统中,miRNA制剂对klk1b26翻译的抑制作用消失了,而[15th-44th] ssDNA本身对翻译没有影响。将miRNA制剂与另一条单链DNA([169th-198th] ssDNA,其序列与klk1b26 mRNA的第169位至第198位相对应)进行预温育未显示抑制作用。结论在体外翻译系统中,雌性小鼠SMG中特异表达的小的非编码RNA,最有可能是miRNA,干扰了klk1b26蛋白的合成。因此,在小鼠SMG中klk1b26表达中观察到的性二态性至少部分归因于SMG中女性特异性的小非编码RNA。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号