揭示成牙髓细胞分化的转录因子编码

IF 5.9 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
J. Lavický, M. Gonzalez Lopez, V. Chochola, P. Kompaníková, V. Rakultsev, J. Raška, E. Wentworth Winchester, H. Tuaima, L. Englmaier, J. Verner, E. Švandová, M. Buchtová, J. Cotney, V. Bryja, D. Bohačiaková, T. Bárta, J. Krivanek
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引用次数: 0

摘要

控制干细胞分化为特化细胞和组织的分子机制非常复杂。破译这一精确调控过程背后的机制不仅对理解个体发生至关重要,而且对解释进化动力学也至关重要。深入了解不同细胞类型的分化过程将为安全、有针对性的组织工程开辟道路。这以前受到技术限制,但最近多组学方法的发展克服了这些障碍,为这种分子机制的复杂运作提供了前所未有的见解。基于连续生长小鼠牙齿单细胞RNA-seq分析,选择4个转录因子(Etv4, Gsc, Sall1, Nupr1)。它们在牙齿发育过程中的作用尚未得到评估。在这里,我们提供了它们在成牙细胞分化中的功能的证据,成牙细胞是负责牙本质生成的牙细胞。我们的研究结果表明,在小鼠诱导的多能干细胞中,直接控制特定转录因子的过度表达足以引导它们在体外和体内分化为具有成牙细胞样表型的细胞。分化后的细胞显示出成牙细胞特异性分子标记(DMP1和DSP)的表达上调,并产生胶原和矿化组织。我们证明了对基本发育事件的深入了解可以为创新细胞分化方法提供强大的基础。综上所述,这项研究可能证明了利用大组学数据通过控制特定转录因子代码的表达来产生特定的、分化的细胞类型的概念。这可能是发育生物学和再生医学领域的一个转折点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unraveling the Transcription Factor Code of Odontoblast Differentiation
The molecular mechanisms controlling the differentiation of stem cells into specialized cells and tissues are enormously complex. Deciphering the mechanisms behind this precisely regulated process is essential not only for understanding ontogenesis but also for interpretations of evolutionary dynamics. A deep understanding of differentiation processes in various cell types would open the way for safe and targeted tissue engineering. This was previously limited by technical constraints, but the recent development of multiomic approaches has overcome these barriers, providing unprecedented insight into the intricate workings of this molecular machinery. Based on single-cell RNA-seq analyses of continuously growing mouse teeth, 4 transcription factors ( Etv4 , Gsc , Sall1 , and Nupr1 ) were selected. Their role during tooth development has not been previously evaluated. Here, we provide evidence about their function in the differentiation of odontoblasts—dental cells responsible for dentin production. Our results revealed that controlled overexpression of specific transcription factors directly in mouse-induced pluripotent stem cells is sufficient to guide their differentiation into cells with an odontoblast-like phenotype, both in vitro and in vivo. The differentiated cells exhibited upregulated expression of odontoblast-specific molecular markers (DMP1 and DSP) as well as production of collagenous and mineralized tissue. We demonstrate that a deep insight into fundamental developmental events can provide a powerful basis for innovative cell differentiation approaches. Taken together, this research might serve as a proof of concept for using large-omics data in the generation of specific, differentiated cell types by controlled expression of a particular transcription factor code. This may represent a turning point in both developmental biology and regenerative medicine fields.
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来源期刊
Journal of Dental Research
Journal of Dental Research 医学-牙科与口腔外科
CiteScore
15.30
自引率
3.90%
发文量
155
审稿时长
3-8 weeks
期刊介绍: The Journal of Dental Research (JDR) is a peer-reviewed scientific journal committed to sharing new knowledge and information on all sciences related to dentistry and the oral cavity, covering health and disease. With monthly publications, JDR ensures timely communication of the latest research to the oral and dental community.
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