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Comparative study of TRPM5 in pancreatic beta-cells of Wistar Kyoto and Goto Kakizaki rats.

机译:Wistar Kyoto和Goto Kakizaki大鼠胰腺β细胞中TRPM5的比较研究。

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摘要

TRPM5 is a member of the melastatin subfamily of the Transient-Receptor- Potential superfamily of ion channels. Through functional analysis of the chromosomal region 11p15.5, TRPM5 was identified and linked to a variety of childhood and adult tumors as well as to Beckwith-Wiedemann syndrome (Prawitt et al., 2000). TRPM5 RNA has been detected in a variety of tissues including: taste receptor cells, small intestines, liver, lungs, testis and brain (Hofmann et al., 2003). In addition, the rat insulinoma (INS- 1) pancreatic ss-cell line was shown to endogenously express TRPM5 (Prawitt et al., 2003). While earlier studies of TRPM5 conducted in taste receptor cells report TRPM5 as a divalent cation channel that is activated through a G protein-coupled receptor/phospholipase C signaling pathway (Perez et al., 2002; Zhang et al., 2003), other studies (Hofmann et al., 2003; Liu and Liman, 2003) have characterized TRPM5 as a Ca2+-activated non-selective monovalent cation channel.;I here, hypothesize that the pancreatic ss-cells of Goto Kakizaki will exhibit a reduction in TRPM5 which may contribute to the dysfunction of the ss-cell. To this end, we utilized immunostaining to compare the endogenous expression of TRPM5 in the Wistar Kyoto and Goto Kakizaki (spontaneous non-obese type 2 diabetes model) rat pancreatic ss-cell. We also incorporated the whole-cell patch technique to examine the activation characteristics of TRPM5 in both populations of rat ss-cells. Being that TRPM5 is Ca 2+-activated, we included fura-2 Ca2+ measurements to connect intracellular Ca2+- signaling to TRPM5 activation. In addition, we utilized the perforated patch technique to study glucose-stimulated Ca2+-signaling and TRPM5 activation.;Our results show TRPM5 expression in Wistar Kyoto rat pancreatic ss-cells with expression in the Goto Kakizaki rat being significantly reduced. We also observe significant differences in the glucose-induced Ca2+-signaling in the Goto Kakizaki rat. Our results suggest that chronic hyperglycemia in the Goto Kakizaki rat reduces expression of TRPM5 and leads to pancreatic ss-cell dysfunction thereby contributing to the progression of type 2 diabetes.
机译:TRPM5是离子通道瞬态-受体-势超家族的褪黑素亚家族的成员。通过对染色体区域11p15.5的功能分析,可以识别出TRPM5,并将其与各种儿童期和成年肿瘤以及Beckwith-Wiedemann综合征相关(Prawitt等,2000)。已经在多种组织中检测到TRPM5 RNA,包括:味觉受体细胞,小肠,肝,肺,睾丸和脑(Hofmann等,2003)。另外,显示大鼠胰岛素瘤(INS-1)胰腺ss细胞系内源表达TRPM5(Prawitt等,2003)。虽然在味觉受体细胞中进行的TRPM5的早期研究报告TRPM5是通过G蛋白偶联受体/磷脂酶C信号传导途径激活的二价阳离子通道(Perez等,2002; Zhang等,2003),但其他研究(Hofmann et al。,2003; Liu and Liman,2003)将TRPM5表征为Ca2 +激活的非选择性单价阳离子通道。我在这里假设,五岛崎崎的胰腺ss细胞会显示出TRPM5的减少,可能导致ss细胞功能障碍。为此,我们利用免疫染色来比较TRPM5在Wistar Kyoto和Goto Kakizaki(自发非肥胖2型糖尿病模型)大鼠胰腺ss细胞中的内源表达。我们还并入了全细胞补丁技术,以检查两个大鼠ss细胞群体中TRPM5的激活特性。由于TRPM5是Ca 2+激活的,因此我们包括了fura-2 Ca2 +测量,以将细胞内Ca2 +-信号传导与TRPM5激活相关联。此外,我们利用穿孔的贴片技术研究了葡萄糖刺激的Ca2 +信号转导和TRPM5激活。我们的结果表明,在Wistar Kyoto大鼠胰腺ss细胞中TRPM5表达与在Goto Kakizaki大鼠中的表达显着降低。我们还观察到五岛崎崎大鼠在葡萄糖诱导的Ca2 +信号传导中存在显着差异。我们的结果表明,五岛崎崎大鼠的慢性高血糖症会降低TRPM5的表达并导致胰腺ss细胞功能障碍,从而促进2型糖尿病的发展。

著录项

  • 作者

    Monteilh-Zoller, Mahealani.;

  • 作者单位

    University of Hawai'i at Manoa.;

  • 授予单位 University of Hawai'i at Manoa.;
  • 学科 Physiology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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