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Sour ageusia in two individuals implicates ion channels of the ASIC and PKD families in human sour taste perception at the anterior tongue. | LitMetric

AI Article Synopsis

  • The study investigates the phenomenon of sour ageusia, where two patients could not perceive sour tastes but still responded normally to bitter, sweet, and salty flavors.
  • Biopsies were taken from the patients and sour-normal individuals, revealing that certain ion channels associated with sour taste (ASICs and PKDs) were absent in the patients but present in the controls.
  • This research implies that ASICs and PKDs play a crucial role in sour taste perception, presenting the first case of sour ageusia in humans and suggesting a distinct cellular pathway for sour taste separate from other flavors.

Article Abstract

Background: The perception of sour taste in humans is incompletely understood at the receptor cell level. We report here on two patients with an acquired sour ageusia. Each patient was unresponsive to sour stimuli, but both showed normal responses to bitter, sweet, and salty stimuli.

Methods And Findings: Lingual fungiform papillae, containing taste cells, were obtained by biopsy from the two patients, and from three sour-normal individuals, and analyzed by RT-PCR. The following transcripts were undetectable in the patients, even after 50 cycles of amplification, but readily detectable in the sour-normal subjects: acid sensing ion channels (ASICs) 1a, 1beta, 2a, 2b, and 3; and polycystic kidney disease (PKD) channels PKD1L3 and PKD2L1. Patients and sour-normals expressed the taste-related phospholipase C-beta2, the delta-subunit of epithelial sodium channel (ENaC) and the bitter receptor T2R14, as well as beta-actin. Genomic analysis of one patient, using buccal tissue, did not show absence of the genes for ASIC1a and PKD2L1. Immunohistochemistry of fungiform papillae from sour-normal subjects revealed labeling of taste bud cells by antibodies to ASICs 1a and 1beta, PKD2L1, phospholipase C-beta2, and delta-ENaC. An antibody to PKD1L3 labeled tissue outside taste bud cells.

Conclusions: These data suggest a role for ASICs and PKDs in human sour perception. This is the first report of sour ageusia in humans, and the very existence of such individuals ("natural knockouts") suggests a cell lineage for sour that is independent of the other taste modalities.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2754526PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0007347PLOS

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