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早熟和晚熟阶段大鼠牙釉质器官的基因表达分析。

Gene-expression analysis of early- and late-maturation-stage rat enamel organ.

作者信息

Lacruz Rodrigo S, Smith Charles E, Chen Yi-Bu, Hubbard Michael J, Hacia Joseph G, Paine Michael L

机构信息

Center for Craniofacial Molecular Biology, Herman Ostrow School of Dentistry, University of Southern California, Los Angeles, CA, USA.

出版信息

Eur J Oral Sci. 2011 Dec;119 Suppl 1(Suppl 1):149-57. doi: 10.1111/j.1600-0722.2011.00881.x.

Abstract

Enamel maturation is a dynamic process that involves high rates of mineral acquisition, associated fluctuations in extracellular pH, and resorption of extracellular enamel proteins. During maturation, ameloblasts change from having a tall, thin, and highly polarized organization, characteristic of the secretory stage, to having a low columnar and widened morphology in the maturation stage. To identify potential differences in gene expression throughout maturation, we obtained enamel organ epithelial cells derived from the early- and late-maturation stages of rat incisor and analyzed the global gene-expression profiles at each stage. Sixty-three candidate genes were identified as having potential roles in the maturation process. Quantitative PCR was used to confirm the results of this genome-wide analysis in a subset of genes. Transcripts enriched during late maturation (n = 38) included those associated with lysosomal activity, solute carrier transport, and calcium signaling. Also up-regulated were transcripts involved in cellular responses to oxidative stress, proton transport, cell death, and the immune system. Transcripts down-regulated during the late maturation stage (n =25) included those with functions related to cell adhesion, cell signaling, and T-cell activation. These results indicate that ameloblasts undergo widespread molecular changes during the maturation stage of amelogenesis and hence provide a basis for future functional investigations into the mechanistic basis of enamel mineralization.

摘要

釉质成熟是一个动态过程,涉及高速度的矿物质摄取、细胞外pH值的相关波动以及细胞外釉质蛋白的吸收。在成熟过程中,成釉细胞从具有分泌期特有的高、薄且高度极化的组织结构,转变为在成熟阶段具有低柱状且变宽的形态。为了确定整个成熟过程中基因表达的潜在差异,我们获取了源自大鼠切牙早期和晚期成熟阶段的釉质器官上皮细胞,并分析了每个阶段的全基因组表达谱。63个候选基因被确定在成熟过程中具有潜在作用。定量PCR用于在一部分基因中确认全基因组分析的结果。在晚期成熟过程中富集的转录本(n = 38)包括那些与溶酶体活性、溶质载体转运和钙信号传导相关的转录本。参与细胞对氧化应激反应、质子转运、细胞死亡和免疫系统的转录本也上调。在晚期成熟阶段下调的转录本(n = 25)包括那些与细胞黏附、细胞信号传导和T细胞活化相关的功能转录本。这些结果表明,成釉细胞在釉质形成的成熟阶段经历了广泛的分子变化,因此为未来对釉质矿化机制基础的功能研究提供了基础。

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