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These data reveal a unique role for AMPK and NHE5 in regulating the pH homeostasis of hippocampal neurons during metabolic stress.
NHE5 partitions into a unique vesicular pool in neurons that shares some characteristics of recycling endosomes where it may serve as an important regulated store of functional transporters required to maintain cytoplasmic pH homeostasis.
overexpression of NHE5 inhibits spine growth in response to neuronal activity
discrete elements of an elaborate sorting signal in NHE5 contribute to beta-arrestin2 (show ARRB2 Antibodies) binding and trafficking along the recycling endosomal pathway.
observations demonstrate that NHE5 is localized to the recycling endosomal pathway and is dynamically regulated by phosphatidylinositol 3'-kinase and by the state of F-actin assembly
beta-Arrestins bind and decrease cell-surface abundance of the Na+/H+ exchanger NHE5 isoform.
RACK1 activates NHE5 both by integrin-dependent and independent pathways, which may coordinate cellular ion homeostasis during cell-matrix adhesion.
SCAMP2 (show SCAMP2 Antibodies) regulates NHE5 transit through recycling endosomes and promotes its surface targeting in an Arf6 (show ARF6 Antibodies)-dependent manner.
facilitates Na+/H+ exchange which is insensitive to the amiloride analogue
solute carrier family 9 (sodium/hydrogen exchanger), isoform 5
, sodium/hydrogen exchanger 5
, Na(+)/H(+) exchanger 5
, solute carrier family 9 (sodium/hydrogen exchanger)
, solute carrier family 9 (sodium/hydrogen exchanger), member 5
, solute carrier family 9 member 5