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mTOR 在釉质器官发育的多个过程中发挥关键作用,主要通过 mTORC1 途径,部分通过调节细胞骨架动力学。

mTOR plays a pivotal role in multiple processes of enamel organ development principally through the mTORC1 pathway and in part via regulating cytoskeleton dynamics.

机构信息

Center for Craniofacial Regeneration, College of Dental Medicine, Columbia University, New York, NY, USA; Center for Birth Defects Research, Department of Obstetrics, Gynecology and Reproductive Sciences, University of Maryland School of Medicine, Baltimore, MD, USA.

Center for Craniofacial Regeneration, College of Dental Medicine, Columbia University, New York, NY, USA.

出版信息

Dev Biol. 2020 Nov 1;467(1-2):77-87. doi: 10.1016/j.ydbio.2020.08.010. Epub 2020 Aug 29.

Abstract

We herein report that deletion of mTOR in dental epithelia caused defective development of multiple cell layers of the enamel organ, which culminated in tooth malformation and cystogenesis. Specifically, cells of the stellate reticulum and stratum intermedium were poorly formed, resulting in cystic changes. The pre-ameloblasts failed to elongate along the apical-basal axis and persisted vigorous expression of Sox2 and P63, which are normally downregulated during cytodifferentiation. Expression of amelogenic markers was also attenuated in mutants. Cell proliferation and cell sizes in mutants were significantly reduced over time. Importantly, we found reduced amounts and aberrant aggregations of cytoskeletal components in mutants, along with attenuated expression of cytoskeleton regulator Cdc42, whose epithelial deletion causes a similar phenotype. Moreover, disruption of actin assembly in an organ culture system affected cell proliferation and cytodifferentiation of tooth germs, supporting a causative role of mTOR-regulated cytoskeleton dynamics for the observed phenotype of mTOR mutant mice. In further support of this view, we showed that mTOR overactivation caused increased cytoskeletal component synthesis and assembly, along with accelerated cytodifferentiation in the enamel organ. Finally, we demonstrated that mTOR regulated enamel organ development principally through the mTORC1 pathway.

摘要

我们在此报告,mTOR 在牙上皮细胞中的缺失导致釉器的多个细胞层发育缺陷,最终导致牙齿畸形和囊形成。具体而言,星状网状层和中间层细胞形成不良,导致囊性改变。成釉细胞前体不能沿顶底轴延长,并持续强烈表达 Sox2 和 P63,这在细胞分化过程中通常会下调。突变体中的成釉标记物的表达也减弱。随着时间的推移,突变体中的细胞增殖和细胞大小显著减少。重要的是,我们发现突变体中的细胞骨架成分的含量减少且异常聚集,同时细胞骨架调节剂 Cdc42 的表达减弱,其上皮缺失会导致类似的表型。此外,在器官培养系统中破坏肌动蛋白组装会影响牙胚的细胞增殖和细胞分化,支持 mTOR 调节的细胞骨架动态在观察到的 mTOR 突变小鼠表型中的因果作用。进一步支持这一观点,我们表明 mTOR 过度激活导致细胞骨架成分的合成和组装增加,并加速釉器的细胞分化。最后,我们证明 mTOR 主要通过 mTORC1 途径调节釉器的发育。

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