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Deciphering the Role of Klf10 in the Cerebellum

机译:破译Klf10在小脑中的作用

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摘要

Recent studies have demonstrated a new role for Klf10, a Kruppel-like transcription factor, in skeletal muscle, specifically relating to mitochondrial function. Thus, it was of interest to analyze additional tissues that are highly reliant on optimal mitochondrial function such as the cerebellum and to decipher the role of Klf10 in the functional and structural properties of this brain region. In vivo (magnetic resonance imaging and localized spectroscopy, behavior analysis) and in vitro (histology, spectroscopy analysis, enzymatic activity) techniques were applied to comprehensively assess the cerebellum of wild type (WT) and Klf10 knockout (KO) mice. Histology analysis and assessment of locomotion revealed no significant difference in Klf10 KO mice. Diffusion and texture results obtained using MRI revealed structural changes in KO mice characterized as defects in the organization of axons. These modifications may be explained by differences in the levels of specific metabolites (myo-inositol, lactate) within the KO cerebellum. Loss of Klf10 expression also led to changes in mitochondrial activity as reflected by a significant increase in the activity of citrate synthase, complexes I and IV. In summary, this study has provided evidence that Klf10 plays an important role in energy production and mitochondrial function in the cerebellum.
机译:最近的研究表明,Klf10(一种类似Kruppel的转录因子)在骨骼肌中具有新的作用,特别是与线粒体功能有关。因此,分析高度依赖最佳线粒体功能的其他组织(如小脑)并破译 Klf10 在该大脑区域的功能和结构特性中的作用是有意义的。采用体内(磁共振成像和局部光谱、行为分析)和体外(组织学、光谱分析、酶活性)技术对野生型(WT)和Klf10基因敲除(KO)小鼠的小脑进行综合评估。组织学分析和运动评估显示Klf10 KO小鼠无显著差异。使用MRI获得的扩散和纹理结果显示KO小鼠的结构变化,其特征是轴突组织的缺陷。这些修饰可以通过KO小脑内特定代谢物(肌醇,乳酸)水平的差异来解释。Klf10 表达的缺失也导致线粒体活性的变化,这反映在柠檬酸合酶、复合物 I 和 IV 活性的显着增加上。综上所述,本研究提供了Klf10在小脑能量产生和线粒体功能中发挥重要作用的证据。

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