- Ion transport function of SLC4A11 in corneal endothelium.
Ion transport function of SLC4A11 in corneal endothelium.
Mutations in SLC4A11, a member of the SLC4 superfamily of bicarbonate transporters, give rise to corneal endothelial cell dystrophies. SLC4A11 is a putative Naโบ borate and Naโบ:OHโป transporter. Therefore we ask whether SLC4A11 in corneal endothelium transports borate (B[OH]โโป), bicarbonate (HCO3โป), or hydroxyl (OHโป) anions coupled to Naโบ. SLC4A11 expression in cultured primary bovine corneal endothelial cells (BCECs) was determined by semiquantitative PCR, SDS-PAGE/Western blotting, and immunofluorescence staining. Ion transport function was examined by measuring intracellular pH (pHi) or Naโบ ([Naโบ](i)) in response to Ringer solutions with/without B(OH)โโป or HCOโโป after overexpressing or small interfering RNA (siRNA) silencing of SLC4A11. SLC4A11 is localized to the basolateral membrane in BCEC. B(OH)โโป (2.5-10 mM) in bicarbonate-free Ringer induced a rapid small acidification (0.01 pH unit) followed by alkalinization (0.05-0.1 pH unit), consistent with diffusion of boric acid into the cell followed by B(OH)โโป. However, the rate of B(OH)โโป-induced pHi change was unaffected by overexpression of SLC4A11. B(OH)โโป did not induce significant changes in resting [Naโบ(i)] or the amplitude and rate of acidification caused by Naโบ removal. siRNA-mediated knockdown of SLC4A11 (โผ70%) did not alter pHi responses to COโ/HCOโโป-rich Ringer, Naโบ-free induced acidification, or the rate of Naโบ influx in the presence of bicarbonate. However, in the absence of bicarbonate, siSLC4A11 knockdown significantly decreased the rate (43%) and amplitude (48%) of acidification due to Naโบ removal and recovery (53%) upon add-back. Additionally, the rate of acid recovery following NHโโบ prepulse was decreased significantly (27%) by SLC4A11 silencing. In corneal endothelium, SLC4A11 displays robust Naโบ-coupled OHโป transport, but does not transport B(OH)โโป or HCOโโป.