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A Glu-496 to Ala polymorphism leads to loss of function of the human P2X7 receptor

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posted on 2024-11-14, 15:02 authored by Ben J Gu, Weiyi Zhang, Rebecca A Worthington, Ronald SluyterRonald Sluyter, L Phuong Dao-Ung, Stephen Petrou, J A Barden, James Wiley
P2X(7) receptor is a ligand-gated cation-selective channel that mediates ATP-induced apoptosis of cells of the immune system. We and others have shown that P2X(7) is nonfunctional both in lymphocytes and monocytes from some subjects. To study a possible genetic basis we sequenced DNA coding for the carboxyl-terminal tail of P2X(7). In 9 of 45 normal subjects a heterozygous nucleotide substitution (1513A-->C) was found, whereas 1 subject carried the homozygous substitution that codes for glutamic acid to alanine at amino acid position 496. Surface expression of P2X(7) on lymphocytes was not affected by this E496A polymorphism, demonstrated both by confocal microscopy and immunofluorescent staining. Monocytes and lymphocytes from the E496A homozygote subject expressed nonfunctional receptor, whereas heterozygotes showed P2X(7) function that was half that of germline P2X(7). Results of transfection experiments showed that the mutant P2X(7) receptor was nonfunctional when expressed at low receptor density but regained function at a high receptor density. This density dependence of mutant P2X(7) function was also seen on differentiation of fresh monocytes to macrophages with interferon-gamma, which up-regulated mutant P2X(7) and partially restored its function. P2X(7)-mediated apoptosis of lymphocytes was impaired in homozygous mutant P2X(7) compared with germline (8.6 versus 35.2%). The data suggest that the glutamic acid at position 496 is required for optimal assembly of the P2X(7) receptor.

History

Citation

Gu, B. J., Zhang, W., Worthington, R. A., Sluyter, R., Dao-Ung, L., Petrou, S., Barden, J. A. & Wiley, J. (2001). A Glu-496 to Ala polymorphism leads to loss of function of the human P2X7 receptor. Journal of Biological Chemistry, 276 (14), 11135-11142.

Journal title

Journal of Biological Chemistry

Volume

276

Issue

14

Pagination

11135-11142

Language

English

RIS ID

31118

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