首页> 外文期刊>BMC Genetics >The gene-expression profile of renal medulla in ISIAH rats with inherited stress-induced arterial hypertension
【24h】

The gene-expression profile of renal medulla in ISIAH rats with inherited stress-induced arterial hypertension

机译:ISIAH遗传性应激性动脉高压大鼠肾髓质的基因表达谱

获取原文
获取外文期刊封面目录资料

摘要

Background The changes in the renal function leading to a reduction of medullary blood flow can have a great impact on sodium and water homeostasis and on the long-term control of arterial blood pressure. The RNA-Seq approach was used for transcriptome profiling of the renal medulla from hypertensive ISIAH and normotensive WAG rats to uncover the genetic basis of the changes underlying the renal medulla function in the ISIAH rats being a model of the stress-sensitive arterial hypertension and to reveal the genes which possibly may contribute to the alterations in medullary blood flow. Results Multiple DEGs specifying the function of renal medulla in ISIAH rats were revealed. The group of DEGs described by Gene Ontology term ‘oxidation reduction’ was the most significantly enriched one. The other groups of DEGs related to response to external stimulus, response to hormone (endogenous) stimulus, response to stress, and homeostatic process provide the molecular basis for integrated responses to homeostasis disturbances in the renal medulla of the ISIAH rats. Several DEGs, which may modulate the renal medulla blood flow, were detected. The reduced transcription of Nos3 pointed to the possible reduction of the blood flow in the renal medulla of ISIAH rats. Conclusions The generated data may be useful for comparison with those from different models of hypertension and for identifying the common molecular determinants contributing to disease manifestation, which may be potentially used as new pharmacological targets.
机译:背景技术肾功能的变化导致髓血流量减少,这可能对钠和水的动态平衡以及对动脉血压的长期控制产生重大影响。 RNA-Seq方法用于对高血压ISIAH和血压正常的WAG大鼠进行肾髓质的转录组分析,以揭示ISIAH大鼠肾髓质功能改变的遗传基础,该模型是压力敏感性动脉高血压的模型,揭示了可能有助于改变髓质血流的基因。结果揭示了多个表明ISIAH大鼠肾髓质功能的DEG。 Gene Ontology术语“氧化还原”描述的一组DEG含量最高。其他与外部刺激反应,对激素(内源性)刺激反应,对压力的反应和体内平衡过程有关的DEGs为ISIAH大鼠肾髓质对稳态平衡紊乱的综合反应提供了分子基础。检测到几种可能调节肾髓质血流的DEG。 Nos3的转录减少表明ISIAH大鼠的肾脏髓质中的血流可能减少。结论所产生的数据可用于与来自不同高血压模型的数据进行比较,并有助于确定导致疾病表现的常见分子决定因素,这些分子决定因素有可能被用作新的药理学靶标。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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