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Human kidney anion exchanger 1 interacts with adaptor-related protein complex 1 mu 1A (AP-1 mu1A)

  作者 Sawasdee, N; Junking, M; Ngaojanlar, P; Sukomon, N; Ungsupravate, D; Limjindaporn, T; Akkarapatumwong, V; Noisakran, S; Yenchitsomanus, PT  
  选自 期刊  Biochemical and Biophysical Research Communications;  卷期  2010年401-1;  页码  85-91  
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[摘要]Kidney anion exchanger 1 (kAE1) mediates chloride (Cl-) and bicarbonate (HCO3-) exchange at the basolateral membrane of kidney alpha-intercalated cells. Impaired trafficking of kAE1 leads to defect of the CI-/ HCO3- exchange at the basolateral membrane and failure of proton (H+) secretion at the apical membrane, causing a kidney disease - distal renal tubular acidosis (dRTA). To gain a better insight into kAE1 trafficking, we searched for proteins physically interacting with the C-terminal region of kAE1 (Ct-kAE1), which contains motifs crucial for intracellular trafficking, by a yeast two-hybrid (Y2H) system. An adaptor-related protein complex 1 mu 1A A (AP-1 mu 1A) subunit was found to interact with Ct-kAE1. The interaction between either Ct-kAE1 or full-length kAE1 and AP-1 mu1A were confirmed in human embryonic kidney (HEK) 293T by co-immunoprecipitation, affinity co-purification, co-localization, yellow fluorescent protein (YFP)-based protein fragment complementation assay (PCA) and GST pull-down assay. The interacting site for AP-1 mu1A on Ct-kAE1 was found to be Y904DEV907, a subset of YXX theta motif. Interestingly, suppression of endogenous AP-1 mu1A in HEK 293T by small interfering RNA (siRNA) decreased membrane localization of kAE1 and increased its intracellular accumulation, suggesting for the first time that AP-1 mu1A is involved in the kAE1 trafficking of kidney alpha-intercalated cells. (C) 2010 Elsevier Inc. All rights reserved.

 
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