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上皮细胞 Cdc42 缺失诱导牙蕾器官缺陷和囊状发育。

Epithelial Cdc42 Deletion Induced Enamel Organ Defects and Cystogenesis.

机构信息

1 Guanghua School of Stomatology, Hospital of Stomatology, Sun Yat-sen University, Guangzhou, China.

2 Center for Craniofacial Regeneration, Columbia University, New York, NY, USA.

出版信息

J Dent Res. 2018 Nov;97(12):1346-1354. doi: 10.1177/0022034518779546. Epub 2018 Jun 6.

Abstract

Cdc42, a Rho family small GTPase, regulates cytoskeleton organization, vesicle trafficking, and other cellular processes in development and homeostasis. However, Cdc42's roles in prenatal tooth development remain elusive. Here, we investigated Cdc42 functions in mouse enamel organ. Cdc42 showed highly dynamic temporospatial patterns in the developing enamel organ, with robust expression in the outer enamel epithelium, stellate reticulum (SR), and stratum intermedium layers. Strikingly, epithelium-specific Cdc42 deletion resulted in cystic lesions in the enamel organ. Cystic lesions were first noted at embryonic day 15.5 and progressively enlarged during gestation. At birth, cystic lesions occupied the bulk of the entire enamel organ, with intracystic erythrocyte accumulation. Ameloblast differentiation was retarded upon epithelial Cdc42 deletion. Apoptosis occurred in the Cdc42 mutant enamel organ prior to and synchronously with cystogenesis. Transmission electron microscopy examination showed disrupted actin assemblies, aberrant desmosomes, and significantly fewer cell junctions in the SR cells of Cdc42 mutants than littermate controls. Autophagosomes were present in the SR cells of Cdc42 mutants relative to the virtual absence of autophagosome in the SR cells of littermate controls. Epithelium-specific Cdc42 deletion attenuated Wnt/β-catenin and Shh signaling in dental epithelium and induced aberrant Sox2 expression in the secondary enamel knot. These findings suggest that excessive cell death and disrupted cell-cell connections may be among multiple factors responsible for the observed cystic lesions in Cdc42 mutant enamel organs. Taken together, Cdc42 exerts multidimensional and pivotal roles in enamel organ development and is particularly required for cell survival and tooth morphogenesis.

摘要

Cdc42 是 Rho 家族的小 GTP 酶,在发育和稳态过程中调节细胞骨架组织、囊泡运输和其他细胞过程。然而,Cdc42 在胎儿牙齿发育中的作用仍不清楚。在这里,我们研究了 Cdc42 在小鼠牙釉质器官中的功能。Cdc42 在发育中的牙釉质器官中表现出高度动态的时空模式,在外釉上皮、星状网状层 (SR) 和中间层中有强烈的表达。引人注目的是,上皮细胞特异性 Cdc42 缺失导致牙釉质器官中的囊性病变。囊性病变首先在胚胎第 15.5 天被注意到,并在妊娠期间逐渐增大。出生时,囊性病变占据了整个牙釉质器官的大部分,伴有囊内红细胞积累。上皮细胞 Cdc42 缺失导致成釉细胞分化延迟。Cdc42 突变体牙釉质器官中的细胞凋亡发生在囊形成之前并与囊形成同步。透射电子显微镜检查显示,Cdc42 突变体的 SR 细胞中的肌动蛋白组装被破坏,桥粒异常,细胞连接明显少于同窝对照。自噬体存在于 Cdc42 突变体的 SR 细胞中,而在同窝对照的 SR 细胞中几乎不存在自噬体。上皮细胞特异性 Cdc42 缺失减弱了牙上皮中的 Wnt/β-catenin 和 Shh 信号,并诱导次级釉结中 Sox2 的异常表达。这些发现表明,细胞死亡过多和细胞-细胞连接破坏可能是导致 Cdc42 突变体牙釉质器官中观察到的囊性病变的多种因素之一。总之,Cdc42 在牙釉质器官发育中发挥多维和关键作用,特别是对细胞存活和牙齿形态发生有要求。

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