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首页> 外文期刊>International Journal of Biomedical Science >MafA is a Key Molecule in Glucose and Energy Balance in the Central Nervous System and Peripheral Organs
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MafA is a Key Molecule in Glucose and Energy Balance in the Central Nervous System and Peripheral Organs

机译:MafA是中枢神经系统和周围器官葡萄糖和能量平衡的关键分子

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MafA is a strong transactivator of insulin in pancreatic β cells. Elucidating the profile of MafA action in organs other than the pancreas is essential. We established an mRNA interference technique that modifies the level of target mRNAs in mice in vivo. After rapidly injecting MafA-siRNA, the resulting changes in the gene profile were analyzed using a microarray system. Significant suppression of the MafA mRNA levels was observed in the pancreas, liver, adipose tissue, and brain of siRNA-injected mice. As we reported previously, the down-regulation of insulin mRNA and adipocytokines was observed in the pancreas, and MafA siRNA caused alterations in the expressions of genes related to lipid metabolism and cell growth in the liver, and the attenuation of cell differentiation in cultured adipocytes. In addition to the effects on these organs, MafA expression was immunohistochemically detected in the brain in our preliminary data, and the expression level in siRNA-treated mice was significantly suppressed. The expressions of the affected genes were distinct, including growth hormone, vasopressin, hypocretin, and pro-melanin-concentrating hormone, were almost completely down-regulated (to ∼1/100). These results suggested that MafA is likely involved in the regulation of hormonal systems related to glucose metabolism, and MafA is likely positioned near the beginning of the cascade or may influence the expressions of the above-mentioned genes in coordination with other factors in brain tissue. Taken together, the findings in this study suggested that MafA functions as a transcription factor with distinct activities in each organ and is cross-linked in several organs.
机译:MafA是胰腺β细胞中胰岛素的强反式激活剂。阐明在胰腺以外的器官中MafA作用的特征是必不可少的。我们建立了一种mRNA干扰技术,可在小鼠体内修饰目标mRNA的水平。快速注射MafA-siRNA后,使用微阵列系统分析了基因图谱中产生的变化。在注射siRNA的小鼠的胰腺,肝脏,脂肪组织和大脑中观察到了MafA mRNA水平的显着抑制。如我们先前所报道,在胰腺中观察到胰岛素mRNA和脂肪细胞因子的下调,MafA siRNA导致与肝脏脂质代谢和细胞生长相关的基因表达改变,以及培养的脂肪细胞中细胞分化的减弱。除了对这些器官的作用外,在我们的初步数据中,还通过免疫组织化学方法在大脑中检测了MafA的表达,并显着抑制了siRNA处理的小鼠中的表达水平。受影响基因的表达是截然不同的,包括生长激素,加压素,降钙素和促黑色素浓缩激素,几乎完全被下调(至约1/100)。这些结果表明,MafA可能参与了与葡萄糖代谢有关的激素系统的调节,并且MafA可能位于级联反应的开始附近,或者可能与脑组织中的其他因素协同作用而影响上述基因的表达。综上所述,这项研究的发现表明,MafA发挥转录因子的作用,在每个器官中具有不同的活性,并在多个器官中交联。

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