Sodium/hydrogen exchanger NHA2 is critical for insulin secretion in β-cells

C Deisl, A Simonin, M Anderegg… - Proceedings of the …, 2013 - National Acad Sciences
C Deisl, A Simonin, M Anderegg, G Albano, G Kovacs, D Ackermann, H Moch, W Dolci…
Proceedings of the National Academy of Sciences, 2013National Acad Sciences
NHA2 is a sodium/hydrogen exchanger with unknown physiological function. Here we show
that NHA2 is present in rodent and human β-cells, as well as β-cell lines. In vivo, two
different strains of NHA2-deficient mice displayed a pathological glucose tolerance with
impaired insulin secretion but normal peripheral insulin sensitivity. In vitro, islets of NHA2-
deficient and heterozygous mice, NHA2-depleted Min6 cells, or islets treated with an NHA2
inhibitor exhibited reduced sulfonylurea-and secretagogue-induced insulin secretion. The …
NHA2 is a sodium/hydrogen exchanger with unknown physiological function. Here we show that NHA2 is present in rodent and human β-cells, as well as β-cell lines. In vivo, two different strains of NHA2-deficient mice displayed a pathological glucose tolerance with impaired insulin secretion but normal peripheral insulin sensitivity. In vitro, islets of NHA2-deficient and heterozygous mice, NHA2-depleted Min6 cells, or islets treated with an NHA2 inhibitor exhibited reduced sulfonylurea- and secretagogue-induced insulin secretion. The secretory deficit could be rescued by overexpression of a wild-type, but not a functionally dead, NHA2 transporter. NHA2 deficiency did not affect insulin synthesis or maturation and had no impact on basal or glucose-induced intracellular Ca2+ homeostasis in islets. Subcellular fractionation and imaging studies demonstrated that NHA2 resides in transferrin-positive endosomes and synaptic-like microvesicles but not in insulin-containing large dense core vesicles in β-cells. Loss of NHA2 inhibited clathrin-dependent, but not clathrin-independent, endocytosis in Min6 and primary β-cells, suggesting defective endo–exocytosis coupling as the underlying mechanism for the secretory deficit. Collectively, our in vitro and in vivo studies reveal the sodium/proton exchanger NHA2 as a critical player for insulin secretion in the β-cell. In addition, our study sheds light on the biological function of a member of this recently cloned family of transporters.
National Acad Sciences