Namkoong Eun, Shin Yong-Hwan, Bae Jun-Seok, Choi Seulki, Kim Minkyoung, Kim Nahyun, Hwang Sung-Min, Park Kyungpyo
Department of Physiology, School of Dentistry, Seoul National University and Dental Research Institute, Seoul, 110-749, Korea.
PLoS One. 2015 Sep 16;10(9):e0138368. doi: 10.1371/journal.pone.0138368. eCollection 2015.
Sodium bicarbonate cotransporters (NBCs) are involved in the pH regulation of salivary glands. However, the roles and regulatory mechanisms among different NBC isotypes have not been rigorously evaluated. We investigated the roles of two different types of NBCs, electroneutral (NBCn1) and electrogenic NBC (NBCe1), with respect to pH regulation and regulatory mechanisms using human submandibular glands (hSMGs) and HSG cells. Intracellular pH (pHi) was measured and the pHi recovery rate from cell acidification induced by an NH4Cl pulse was recorded. Subcellular localization and protein phosphorylation were determined using immunohistochemistry and co-immunoprecipitation techniques. We determined that NBCn1 is expressed on the basolateral side of acinar cells and the apical side of duct cells, while NBCe1 is exclusively expressed on the apical membrane of duct cells. The pHi recovery rate in hSMG acinar cells, which only express NBCn1, was not affected by pre-incubation with 5 μM PP2, an Src tyrosine kinase inhibitor. However, in HSG cells, which express both NBCe1 and NBCn1, the pHi recovery rate was inhibited by PP2. The apparent difference in regulatory mechanisms for NBCn1 and NBCe1 was evaluated by artificial overexpression of NBCn1 or NBCe1 in HSG cells, which revealed that the pHi recovery rate was only inhibited by PP2 in cells overexpressing NBCe1. Furthermore, only NBCe1 was significantly phosphorylated and translocated by NH4Cl, which was inhibited by PP2. Our results suggest that both NBCn1 and NBCe1 play a role in pHi regulation in hSMG acinar cells, and also that Src kinase does not regulate the activity of NBCn1.
碳酸氢钠共转运体(NBCs)参与唾液腺的pH调节。然而,不同NBC亚型之间的作用和调节机制尚未得到严格评估。我们使用人下颌下腺(hSMGs)和HSG细胞,研究了两种不同类型的NBCs,即电中性(NBCn1)和生电NBC(NBCe1)在pH调节和调节机制方面的作用。测量细胞内pH(pHi),并记录由氯化铵脉冲诱导的细胞酸化后的pHi恢复率。使用免疫组织化学和免疫共沉淀技术确定亚细胞定位和蛋白质磷酸化。我们确定NBCn1表达于腺泡细胞的基底外侧和导管细胞的顶端,而NBCe1仅表达于导管细胞的顶端膜。仅表达NBCn1的hSMG腺泡细胞中的pHi恢复率不受5μM PP2(一种Src酪氨酸激酶抑制剂)预孵育的影响。然而,在同时表达NBCe1和NBCn1的HSG细胞中,pHi恢复率受到PP2的抑制。通过在HSG细胞中人工过表达NBCn1或NBCe1评估了NBCn1和NBCe1调节机制的明显差异,结果显示仅在过表达NBCe1的细胞中pHi恢复率受到PP2的抑制。此外,只有NBCe1被氯化铵显著磷酸化并易位,这一过程受到PP2的抑制。我们的结果表明,NBCn1和NBCe1在hSMG腺泡细胞的pHi调节中均发挥作用,并且Src激酶不调节NBCn1的活性。