Cooperation of Antiporter LAT2/CD98hc with Uniporter TAT1 for Renal Reabsorption of Neutral Amino Acids

J Am Soc Nephrol. 2018 Jun;29(6):1624-1635. doi: 10.1681/ASN.2017111205. Epub 2018 Apr 2.

Abstract

Background Reabsorption of amino acids (AAs) across the renal proximal tubule is crucial for intracellular and whole organism AA homeostasis. Although the luminal transport step is well understood, with several diseases caused by dysregulation of this process, the basolateral transport step is not understood. In humans, only cationic aminoaciduria due to malfunction of the basolateral transporter y+LAT1/CD98hc (SLC7A7/SLC3A2), which mediates the export of cationic AAs, has been described. Thus, the physiologic roles of basolateral transporters of neutral AAs, such as the antiporter LAT2/CD98hc (SLC7A8/SLC3A2), a heterodimer that exports most neutral AAs, and the uniporter TAT1 (SLC16A10), which exports only aromatic AAs, remain unclear. Functional cooperation between TAT1 and LAT2/CD98hc has been suggested by in vitro studies but has not been evaluated in vivoMethods To study the functional relationship of TAT1 and LAT2/CD98hc in vivo, we generated a double-knockout mouse model lacking TAT1 and LAT2, the catalytic subunit of LAT2/CD98hc (dKO LAT2-TAT1 mice).Results Compared with mice lacking only TAT1 or LAT2, dKO LAT2-TAT1 mice lost larger amounts of aromatic and other neutral AAs in their urine due to a tubular reabsorption defect. Notably, dKO mice also displayed decreased tubular reabsorption of cationic AAs and increased expression of y+LAT1/CD98hc.Conclusions The LAT2/CD98hc and TAT1 transporters functionally cooperate in vivo, and y+LAT1/CD98hc may compensate for the loss of LAT2/CD98hc and TAT1, functioning as a neutral AA exporter at the expense of some urinary loss of cationic AAs. Cooperative and compensatory mechanisms of AA transporters may explain the lack of basolateral neutral aminoacidurias in humans.

Keywords: AGAT; fibrosis; mitochondriopathy; protein deposits; tubulopathy.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Amino Acid Transport System y+ / genetics*
  • Amino Acid Transport System y+ / metabolism
  • Amino Acid Transport Systems, Neutral / genetics*
  • Amino Acid Transport Systems, Neutral / metabolism
  • Amino Acids, Neutral / metabolism*
  • Amino Acids, Neutral / urine
  • Animals
  • Female
  • Fusion Regulatory Protein 1, Heavy Chain / metabolism
  • Fusion Regulatory Protein 1, Light Chains / genetics*
  • Fusion Regulatory Protein 1, Light Chains / metabolism
  • Kidney Tubules / physiology
  • Male
  • Mice, Knockout
  • Renal Reabsorption*

Substances

  • Amino Acid Transport System y+
  • Amino Acid Transport Systems, Neutral
  • Amino Acids, Neutral
  • Fusion Regulatory Protein 1, Heavy Chain
  • Fusion Regulatory Protein 1, Light Chains
  • SLC7A8 protein, mouse
  • Slc16a10 protein, mouse
  • Slc3A2 protein, mouse