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Differential Expression of Genes Associated with the Progression of Renal Disease in the Kidneys of Liver-Specific Glucokinase Gene Knockout Mice

机译:与肾脏疾病相关的基因在肝脏特异性葡萄糖激酶基因基因敲除小鼠肾脏中的差异表达

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摘要

Liver glucokinase (GCK) deficient mice possess mild renal complications associated with diabetes. To investigate the progression of kidney disease and identify candidate genes involved in the pathogenesis of renal damage, we examined changes in tissue structure and gene expression in the kidneys of liver-specific GCK knockout (gckw/−) mice and age-matched normal wild-type control (gckw/w) mice as they aged. Suppression subtractive hybridization (SSH) was used to identify candidate genes that showed a pattern of differential expression between kidneys of gckw/− and gckw/w mice at 60 weeks of age. Differential expression of the candidate genes was examined by real-time qPCR in liver-specific gckw/− and gckw/w mice at 16, 26, 40, 60, and 85 weeks of age. Among the candidate genes, only glutathione peroxidase-3 (GPX3) was confirmed to show differential expression by qPCR in the 60-week old mice, however two others genes, MALAT1 and KEG, showed significant changes at other ages. This study shows that liver-specific glucokinase deficient mice display changes in kidney morphology by 40 weeks of age, and that renal complication may be correlated with a reduction in GPX3 levels. Since decreased GPX3 mRNA expression was observed at 26 weeks, which is younger than the age when pathological changes can be seen in kidney biopsies, GPX3 may serve as an early marker for kidney damage.
机译:肝葡萄糖激酶(GCK)缺陷型小鼠患有与糖尿病相关的轻度肾脏并发症。为了研究肾脏疾病的进展并确定参与肾脏损害发病机制的候选基因,我们检查了肝特异性GCK基因敲除的肾脏组织结构和基因表达的变化(gck w /-)小鼠和与年龄匹配的正常野生型对照(gck w / w )小鼠随着年龄增长而增长。使用抑制消减杂交(SSH)来鉴定候选基因,这些候选基因在60周龄的gck w /-和gck w / w 小鼠的肾脏之间表现出差异表达模式。年龄。通过实时qPCR在16、26、40、60、60和60岁的肝特异性gck w /-和gck w / w 小鼠中检测候选基因的差异表达和85周龄。在候选基因中,只有谷胱甘肽过氧化物酶3(GPX3)被qPCR证实在60周龄小鼠中显示出差异表达,但是其他两个基因MALAT1和KEG在其他年龄显示出显着变化。这项研究表明,肝脏特异性葡萄糖激酶缺乏症小鼠到40周龄时,其肾脏形态会发生变化,并且肾脏并发症可能与GPX3水平降低有关。由于在第26周观察到GPX3 mRNA表达下降,这比在肾脏活检中可以看到病理变化的年龄还年轻,因此GPX3可以作为肾脏损伤的早期标志物。

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