首页> 外文期刊>Journal of diabetes research. >The Pattern of mRNA Expression Is Changed in Sinoatrial Node from Goto-Kakizaki Type 2 Diabetic Rat Heart
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The Pattern of mRNA Expression Is Changed in Sinoatrial Node from Goto-Kakizaki Type 2 Diabetic Rat Heart

机译:后藤崎崎2型糖尿病大鼠心脏窦房结mRNA表达模式的改变

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Background. In vivo experiments in Goto-Kakizaki (GK) type 2 diabetic rats have demonstrated reductions in heart rate from a young age. The expression of genes encoding more than 70 proteins that are associated with the generation and conduction of electrical activity in the GK sinoatrial node (SAN) have been evaluated to further clarify the molecular basis of the low heart rate. Materials and Methods. Heart rate and expression of genes were evaluated with an extracellular electrode and real-time RT-PCR, respectively. Rats aged 12-13 months were employed in these experiments. Results. Isolated spontaneous heart rate was reduced in GK heart (161 ± 12 bpm) compared to controls (229 ± 11 bpm). There were many differences in expression of mRNA, and some of these differences were of particular interest. Compared to control SAN, expression of some genes were downregulated in GK-SAN gap junction, Gja1 (Cx43), Gja5 (Cx40), Gjc1 (Cx45), and Gjd3 (Cx31.9); cell membrane transport, Trpc1 (TRPC1) and Trpc6 (TRPC6); hyperpolarization-activated cyclic nucleotide-gated channels, Hcn1 (HCN1) and Hcn4 (HCN4); calcium channels, Cacna1d (Cav1.3), Cacna1g (Cav3.1), Cacna1h (Cav3.2), Cacna2d1 (Cavα2δ1), Cacna2d3 (Cavα2δ3), and Cacng4 (Cavγ4); and potassium channels, Kcna2 (Kv1.2), Kcna4 (Kv1.4), Kcna5 (Kv1.5), Kcnb1 (Kv2.1), Kcnd3 (Kv4.3), Kcnj2 (Kir2.1), Kcnk1 (TWIK1), Kcnk5 (K2P5.1), Kcnk6 (TWIK2), and Kcnn2 (SK2) whilst others were upregulated in GK-SAN Ryr2 (RYR2) and Nppb (BNP). Conclusions. This study provides new insight into the changing expression of genes in the sinoatrial node of diabetic heart.
机译:背景。 Goto-Kakizaki(GK)2型糖尿病大鼠的体内实验表明,从年轻时起心率就会降低。已经评估了编码70多种与GK窦房结(SAN)中电活动的产生和传导相关的蛋白质的基因的表达,以进一步阐明低心率的分子基础。材料和方法。心率和基因表达分别通过细胞外电极和实时RT-PCR进行评估。在这些实验中使用了12-13个月大的大鼠。结果。与对照组(229±±11 bpm)相比,GK心脏的孤立自发心率降低(161±±12 bpm)。 mRNA表达存在许多差异,其中一些差异特别令人关注。与对照SAN相比,GK-SAN间隙连接,Gja1(Cx43),Gja5(Cx40),Gjc1(Cx45)和Gjd3(Cx31.9)的某些基因表达下调;细胞膜转运,Trpc1(TRPC1)和Trpc6(TRPC6);超极化激活的环状核苷酸门控通道Hcn1(HCN1)和Hcn4(HCN4);钙通道,Cacna1d(Cav1.3),Cacna1g(Cav3.1),Cacna1h(Cav3.2),Cacna2d1(Cavα2δ1),Cacna2d3(Cavα2δ3)和Cacng4(Cavγ4);和钾通道,Kcna2(Kv1.2),Kcna4(Kv1.4),Kcna5(Kv1.5),Kcnb1(Kv2.1),Kcnd3(Kv4.3),Kcnj2(Kir2.1),Kcnk1(TWIK1) ,Kcnk5(K2P5.1),Kcnk6(TWIK2)和Kcnn2(SK2),而其他的则在GK-SAN Ryr2(RYR2)和Nppb(BNP)中上调。结论。这项研究为糖尿病心脏窦房结中基因表达的变化提供了新的见识。

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