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利用基于 RNA 的控制器调节成肌细胞分化。

Modulating myoblast differentiation with RNA-based controllers.

机构信息

Department of Bioengineering, Stanford University, Stanford, CA, United States of America.

Department of Neurology and Neurological Sciences, Stanford University School of Medicine, Stanford, CA, United States of America.

出版信息

PLoS One. 2022 Sep 27;17(9):e0275298. doi: 10.1371/journal.pone.0275298. eCollection 2022.

Abstract

Tunable genetic controllers play a critical role in the engineering of biological systems that respond to environmental and cellular signals. RNA devices, a class of engineered RNA-based controllers, enable tunable gene expression control of target genes in response to molecular effectors. RNA devices have been demonstrated in a number of systems showing proof-of-concept of applying ligand-responsive control over therapeutic activities, including regulation of cell fate decisions such as T cell proliferation and apoptosis. Here, we describe the application of a theophylline-responsive RNA device in a muscle progenitor cell system to control myogenic differentiation. Ribozyme-based RNA switches responsive to theophylline control fluorescent reporter expression in C2C12 myoblasts in a ligand dependent manner. HRAS and JAK1, both anti-differentiation proteins, were incorporated into RNA devices. Finally, we demonstrate that the regulation of HRAS expression via theophylline-responsive RNA devices results in the modulation of myoblast differentiation in a theophylline-dependent manner. Our work highlights the potential for RNA devices to exert drug-responsive, tunable control over cell fate decisions with applications in stem cell therapy and basic stem cell biology research.

摘要

可调基因控制器在响应环境和细胞信号的生物系统工程中起着关键作用。RNA 器件是一类经过工程设计的基于 RNA 的控制器,可实现对靶基因的基因表达控制,以响应分子效应物。RNA 器件已在多个系统中得到验证,证明了在治疗活性方面应用配体响应控制的概念验证,包括调节细胞命运决定,如 T 细胞增殖和凋亡。在这里,我们描述了茶碱响应 RNA 器件在肌肉祖细胞系统中的应用,以控制成肌分化。基于核酶的 RNA 开关可响应茶碱,以配体依赖的方式控制 C2C12 成肌细胞中的荧光报告基因表达。HRAS 和 JAK1 是两种抗分化蛋白,被整合到 RNA 器件中。最后,我们证明了通过茶碱响应 RNA 器件调节 HRAS 表达可导致肌母细胞分化以茶碱依赖的方式进行调节。我们的工作强调了 RNA 器件在干细胞治疗和基础干细胞生物学研究中对细胞命运决定进行药物响应、可调控制的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b966/9514614/815372d555cb/pone.0275298.g001.jpg

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