University of Southern California, School of Dentistry, Center for Craniofacial Molecular Biology, 2250 Alcazar Street, CSA Room #103, Los Angeles, CA 90033, USA.
Biochem Biophys Res Commun. 2010 Mar 19;393(4):883-7. doi: 10.1016/j.bbrc.2010.02.116. Epub 2010 Feb 20.
Enamel formation requires rigid control of pH homeostasis during all stages of development to prevent disruptions to crystal growth. The acceleration of the generation of bicarbonate by carbonic anhydrases (CA) has been suggested as one of the pathways used by ameloblasts cells to regulate extracellular pH yet only two isozymes (CA II and CA VI) have been reported to date during enamel formation. The mammalian CA family contains 16 different isoforms of which 13 are enzymatically active. We have conducted a systematic screening by RT-PCR on the expression of all known CA isoforms in mouse enamel organ epithelium (EOE) cells dissected from new born, in secretory ameloblasts derived from 7-day-old animals, and in the LS8 ameloblast cell line. Results show that all CA isoforms are expressed by EOE/ameloblast cells in vivo. The most highly expressed are the catalytic isozymes CA II, VI, IX, and XIII, and the acatalytic CA XI isoform. Only minor differences were found in CA expression levels between 1-day EOE cells and 7-day-old secretory-stage ameloblasts, whereas LS8 cells expressed fewer CA isoforms than both of these. The broad expression of CAs by ameloblasts reported here contributes to our understanding of pH homeostasis during enamel development and demonstrates its complexity. Our results also highlight the critical role that regulation of pH plays during the development of enamel.
牙釉质的形成需要在发育的各个阶段严格控制 pH 值的动态平衡,以防止晶体生长受到干扰。碳酸酐酶 (CA) 加速碳酸氢盐的生成,被认为是成釉细胞调节细胞外 pH 值的途径之一,但到目前为止,只有两种同工酶(CA II 和 CA VI)在牙釉质形成过程中被报道。哺乳动物 CA 家族包含 16 种不同的同工酶,其中 13 种具有酶活性。我们通过 RT-PCR 对从新生小鼠中分离的牙釉器官上皮 (EOE) 细胞、7 天龄动物来源的分泌期成釉细胞以及 LS8 成釉细胞瘤细胞系中所有已知 CA 同工酶的表达进行了系统筛选。结果表明,所有 CA 同工酶在体内均由 EOE/成釉细胞表达。表达水平最高的是催化同工酶 CA II、VI、IX 和 XIII 以及无催化活性的 CA XI 同工酶。1 天 EOE 细胞和 7 天分泌期成釉细胞之间的 CA 表达水平差异较小,而 LS8 细胞的表达水平则低于这两种细胞。本研究报告了成釉细胞广泛表达 CA,这有助于我们理解牙釉质发育过程中的 pH 值动态平衡,并证明其复杂性。我们的结果还突出了 pH 值调节在牙釉质发育过程中的关键作用。