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V-type ATPase Proton Pump Expression During Enamel Formation

机译:搪瓷形成过程中的V型ATPase质子泵表达

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摘要

Several diseases such as proximal and distal renal tubular acidosis and osteoporosis are related to intracellular pH dysregulation resulting from mutations in genes coding for ion channels, including proteins comprising the proton-pumping V-type ATPase. V-type ATPase is a multi-subunit protein complex expressed in enamel forming cells. V-type ATPase plays a key role in enamel development, specifically lysosomal acidification, yet our understanding of the relationship between the endocytotic activities and dental health and disease is limited. The objective of this study is to better understand the ameloblast-associated pH regulatory networks essential for amelogenesis. Quantitative RT-PCR was performed on tissues from secretory-stage and maturation-stage enamel organs to determine which of the V-type ATPase subunits are most highly upregulated during maturation-stage amelogenesis: a time when ameloblast endocytotic activity is highest. Western blot analyses, using specific antibodies to four of the V-type ATPase subunits (Atp6v0d2, Atp6v1b2, Atp6v1c1 and Atp6v1e1), were then applied to validate much of the qPCR data. Immunohistochemistry using these same four antibodies was also performed to identify the spatiotemporal expression profiles of individual V-type ATPase subunits. Our data show that cytoplasmic V-type ATPase is significantly upregulated in enamel organ cells during maturation-stage when compared to secretory-stage. These data likely relate to the higher endocytotic activities, and the greater need for lysosomal acidification, during maturation-stage amelogenesis. It is also apparent from our immunolocalization data, using antibodies against two of the V-type ATPase subunits (Atp6v1c1 and Atp6v1e1), that significant expression is seen at the apical membrane of maturation-stage ameloblasts. Others have also identified this V-type ATPase expression profile at the apical membrane of maturation ameloblasts. Collectively, these data better define the expression and role of the V-type ATPase proton pump in the enamel organ during amelogenesis.
机译:几种疾病(例如近端和远端肾小管酸中毒和骨质疏松症)与细胞内pH失调有关,细胞内pH失调是由编码离子通道的基因(包括质子泵浦的V型ATPase)编码突变引起的。 V型ATPase是在牙釉质形成细胞中表达的多亚基蛋白质复合物。 V型ATP酶在釉质的发展(尤其是溶酶体酸化)中起着关键作用,但是我们对内吞活性与牙齿健康和疾病之间关系的理解是有限的。这项研究的目的是更好地了解成釉细胞与成釉相关的pH调节网络。对分泌期和成熟期牙釉质器官的组织进行了定量RT-PCR,以确定在成熟期牙釉质形成过程中成釉细胞内吞活性最高的那个V型ATPase亚基中上调程度最高。然后,使用针对四个V型ATP酶亚基(Atp6v0d2,Atp6v1b2,Atp6v1c1和Atp6v1e1)的特异性抗体进行Western印迹分析,以验证许多qPCR数据。还使用这四种相同的抗体进行了免疫组织化学,以鉴定单个V型ATPase亚基的时空表达谱。我们的数据显示,与分泌阶段相比,在成熟阶段,釉质器官细胞中的胞质V型ATPase明显上调。这些数据可能与成熟阶段形成过程中较高的胞吞活性和对溶酶体酸化的更大需求有关。从我们的免疫定位数据也可以明显看出,使用针对两个V型ATPase亚基的抗体(Atp6v1c1和Atp6v1e1),在成熟阶段成釉细胞的顶膜上可见明显的表达。其他人也已经确定了成年成釉细胞顶膜上的这种V型ATPase表达谱。总的来说,这些数据更好地定义了牙釉质形成过程中V型ATPase质子泵在牙釉质器官中的表达和作用。

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