Liu Ying, Lu Qun-Wei, Chen Li-Ming
Department of Biophysics and Molecular Physiology, School of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.
Sheng Li Xue Bao. 2012 Dec 25;64(6):729-40.
Na⁺/HCO₃⁻ cotransporter NBCe1 is an electrogenic member of the solute carrier 4 (SLC4) family and plays important roles in intracellular pH regulation as well as transepithelial HCO₃⁻ movement. The physiological and pathological significance of NBCe1 has been well established by genetic studies with humans as well as knock-out study with mouse. NBCe1 is expressed in diverse tissues in mammals. The transporter plays an essential role in the maintenance of acid-base homeostasis in our body, being responsible for more ~80% of HCO₃⁻ reabsorption in the proximal renal tubule. In humans, a number of SLC4A4 mutations have been associated with proximal renal tubule acidosis that is often accompanied with short stature, ocular abnormalities (including cataract, glaucoma, and band keratopathy), migraine, and/or defects in dental enamel development. In the present article, we review the molecular physiology, the structure/function relationship, the mechanisms underlying the functional regulation of NBCe1, as well as the physiological and pathological roles of the transporter.
钠离子/碳酸氢根共转运体NBCe1是溶质载体4(SLC4)家族的一种电生性成员,在细胞内pH调节以及跨上皮碳酸氢根转运中发挥重要作用。通过对人类的遗传学研究以及对小鼠的基因敲除研究,NBCe1的生理和病理意义已得到充分证实。NBCe1在哺乳动物的多种组织中表达。该转运体在维持机体酸碱平衡中起关键作用,负责近端肾小管中约80%以上的碳酸氢根重吸收。在人类中,许多SLC4A4突变与近端肾小管酸中毒相关,常伴有身材矮小、眼部异常(包括白内障、青光眼和带状角膜病变)、偏头痛和/或牙釉质发育缺陷。在本文中,我们综述了NBCe1的分子生理学、结构/功能关系、功能调节的潜在机制以及该转运体的生理和病理作用。