Suppr超能文献

转位子蛋白/反位子蛋白微 RNA 降解酶的遗传失活可模拟转位子蛋白(Tsn)缺失所引起的肥胖表型。

Genetic inactivation of the translin/trax microRNA-degrading enzyme phenocopies the robust adiposity induced by Translin (Tsn) deletion.

机构信息

The Solomon H. Snyder Department of Neuroscience, Johns Hopkins School of Medicine, Baltimore, MD 21205, USA.

Department of Psychiatry and Behavioral Sciences, Johns Hopkins School of Medicine, Baltimore, MD 21205, USA.

出版信息

Mol Metab. 2020 Oct;40:101013. doi: 10.1016/j.molmet.2020.101013. Epub 2020 May 11.

Abstract

OBJECTIVE

Deletion of Translin (Tsn) from mice induces an unusual metabolic profile characterized by robust adiposity, normal body weight and glucose tolerance. Translin (TN) protein and its partner, trax (TX), form the TN/TX microRNA-degrading enzyme. Since the microRNA system plays a prominent role in regulating metabolism, we reasoned that the metabolic profile displayed by Tsn KO mice might reflect dysregulation of microRNA signaling.

METHODS

To test this hypothesis, we inserted a mutation, E126A, in Tsnax, the gene encoding TX, that abolishes the microRNA-degrading enzymatic activity of the TN/TX complex. In addition, to help define the cell types that drive the adiposity phenotype, we have also generated mice with floxed alleles of Tsn or Tsnax.

RESULTS

Introduction of the E126A mutation in Tsnax does not impair expression of TN or TX proteins or their co-precipitation. Furthermore, these mice display selective increases in microRNAs that match those induced by Tsn deletion, confirming that this mutation in Tsnax inactivates the microRNA-degrading activity of the TN/TX complex. Mice homozygous for the Tsnax (E126A) mutation display a metabolic profile that closely mimics that of Tsn KO mice. Selective deletion of Tsn or Tsnax from either adipocytes or hepatocytes, two candidate cell types, does not phenocopy the elevated adiposity displayed by mice with constitutive Tsn deletion or the Tsnax (E126A) mutation. Furthermore, global, conditional deletion of Tsn in adulthood does not elicit increased adiposity.

CONCLUSION

Taken together, these findings indicate that inactivation of the TN/TX microRNA-degrading enzyme during development is necessary to drive the robust adiposity displayed by Tsn KO mice.

摘要

目的

从老鼠中删除 Translin(Tsn)会引起一种不寻常的代谢特征,其特征为明显肥胖、正常体重和葡萄糖耐量。Translin(TN)蛋白及其伴侣 trax(TX)形成 TN/TX 微小 RNA 降解酶。由于微小 RNA 系统在调节代谢中起着突出的作用,我们推测 Tsn KO 小鼠所表现出的代谢特征可能反映了微小 RNA 信号的失调。

方法

为了验证这一假设,我们在编码 TX 的 Tsnax 基因中插入了一个突变 E126A,该突变消除了 TN/TX 复合物的微小 RNA 降解酶活性。此外,为了帮助确定导致肥胖表型的细胞类型,我们还生成了 Tsn 或 Tsnax 基因的 floxed 等位基因的小鼠。

结果

在 Tsnax 中引入 E126A 突变不会损害 TN 或 TX 蛋白的表达或它们的共沉淀。此外,这些小鼠显示出与 Tsn 缺失诱导的微小 RNA 选择性增加相匹配,证实了 Tsnax 中的这种突变使 TN/TX 复合物的微小 RNA 降解活性失活。Tsnax(E126A)突变的纯合小鼠显示出与 Tsn KO 小鼠非常相似的代谢特征。从脂肪细胞或肝细胞(两种候选细胞类型)中选择性地删除 Tsn 或 Tsnax,不会模拟由 Tsn 缺失或 Tsnax(E126A)突变引起的脂肪细胞增多。此外,成年期的 Tsn 全局、条件性缺失不会引起脂肪细胞增多。

结论

总之,这些发现表明,在发育过程中 TN/TX 微小 RNA 降解酶的失活是驱动 Tsn KO 小鼠明显肥胖的必要条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22f9/7305343/1a261a7bf0dd/gr1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验