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mRNA-Seq 揭示了与热量限制相关的小鼠骨骼肌转录组中基因调控和表达的复杂模式。

mRNA-Seq reveals complex patterns of gene regulation and expression in the mouse skeletal muscle transcriptome associated with calorie restriction.

机构信息

Department of Biochemistry, University of California at Riverside, 92521, USA.

出版信息

Physiol Genomics. 2012 Mar 19;44(6):331-44. doi: 10.1152/physiolgenomics.00129.2011. Epub 2012 Jan 24.

Abstract

Sarcopenia is an age-associated loss of skeletal muscle mass and strength that increases the risk of disability. Calorie restriction (CR), the consumption of fewer calories while maintaining adequate nutrition, mitigates sarcopenia and many other age-related diseases. To identify potential mechanisms by which CR preserves skeletal muscle integrity during aging, we used mRNA-Seq for deep characterization of gene regulation and mRNA abundance in skeletal muscle of old mice compared with old mice subjected to CR. mRNA-Seq revealed complex CR-associated changes in expression of mRNA isoforms, many of which occur without a change in total message abundance and thus would not be detected by methods other than mRNA-Seq. Functional annotation of differentially expressed genes reveals CR-associated upregulation of pathways involved in energy metabolism and lipid biosynthesis, and downregulation of pathways mediating protein breakdown and oxidative stress, consistent with earlier microarray-based studies. CR-associated changes not noted in previous studies involved downregulation of genes controlling actin cytoskeletal structures and muscle development. These CR-associated changes reflect generally healthier muscle, consistent with CR's mitigation of sarcopenia. mRNA-Seq generates a rich picture of the changes in gene expression associated with CR, and may facilitate identification of genes that are primary mediators of CR's effects.

摘要

肌肉减少症是一种与年龄相关的骨骼肌质量和力量损失,会增加残疾的风险。热量限制(CR),即在保持充足营养的同时减少卡路里的摄入,可以减轻肌肉减少症和许多其他与年龄相关的疾病。为了确定 CR 在衰老过程中保护骨骼肌完整性的潜在机制,我们使用 mRNA-Seq 对老年小鼠和接受 CR 的老年小鼠的骨骼肌基因调控和 mRNA 丰度进行了深度特征分析。mRNA-Seq 揭示了 CR 相关的 mRNA 异构体表达的复杂变化,其中许多变化发生在总信息含量没有变化的情况下,因此除了 mRNA-Seq 之外的方法无法检测到。差异表达基因的功能注释揭示了 CR 相关的能量代谢和脂质生物合成途径的上调,以及介导蛋白质分解和氧化应激途径的下调,这与早期基于微阵列的研究一致。在以前的研究中没有注意到的 CR 相关变化涉及控制肌动蛋白细胞骨架结构和肌肉发育的基因下调。这些 CR 相关的变化反映了更健康的肌肉,这与 CR 减轻肌肉减少症的作用一致。mRNA-Seq 生成了与 CR 相关的基因表达变化的丰富图谱,并且可能有助于确定 CR 作用的主要介导基因。

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