Proteolytic cleavage of human acid-sensing ion channel 1 by the serine protease matriptase

J Biol Chem. 2010 Aug 27;285(35):27130-27143. doi: 10.1074/jbc.M110.153213. Epub 2010 Jul 2.

Abstract

Acid-sensing ion channel 1 (ASIC1) is a H(+)-gated channel of the amiloride-sensitive epithelial Na(+) channel (ENaC)/degenerin family. ASIC1 is expressed mostly in the central and peripheral nervous system neurons. ENaC and ASIC function is regulated by several serine proteases. The type II transmembrane serine protease matriptase activates the prototypical alphabetagammaENaC channel, but we found that matriptase is expressed in glioma cells and its expression is higher in glioma compared with normal astrocytes. Therefore, the goal of this study was to test the hypothesis that matriptase regulates ASIC1 function. Matriptase decreased the acid-activated ASIC1 current as measured by two-electrode voltage clamp in Xenopus oocytes and cleaved ASIC1 expressed in oocytes or CHO K1 cells. Inactive S805A matriptase had no effect on either the current or the cleavage of ASIC1. The effect of matriptase on ASIC1 was specific, because it did not affect the function of ASIC2 and no matriptase-specific ASIC2 fragments were detected in oocytes or in CHO cells. Three matriptase recognition sites were identified in ASIC1 (Arg-145, Lys-185, and Lys-384). Site-directed mutagenesis of these sites prevented matriptase cleavage of ASIC1. Our results show that matriptase is expressed in glioma cells and that matriptase specifically cleaves ASIC1 in heterologous expression systems.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Acid Sensing Ion Channels
  • Animals
  • Astrocytes / metabolism
  • CHO Cells
  • Cell Line, Tumor
  • Cricetinae
  • Cricetulus
  • Epithelial Sodium Channels / genetics
  • Epithelial Sodium Channels / metabolism
  • Glioma / genetics
  • Glioma / metabolism
  • Humans
  • Mutagenesis, Site-Directed
  • Nerve Tissue Proteins / genetics
  • Nerve Tissue Proteins / metabolism*
  • Neurons / metabolism*
  • Oocytes
  • Peripheral Nervous System / metabolism*
  • Serine Endopeptidases / genetics
  • Serine Endopeptidases / metabolism*
  • Sodium Channels / genetics
  • Sodium Channels / metabolism*
  • Xenopus

Substances

  • ASIC1 protein, human
  • Acid Sensing Ion Channels
  • Epithelial Sodium Channels
  • Nerve Tissue Proteins
  • Sodium Channels
  • Serine Endopeptidases
  • ST14 protein, human