Expression of aquaporin water channels in rat taste buds

被引:25
|
作者
Watson, Kristina J.
Kim, Insook
Baquero, Arian F.
Burks, Catherine A.
Liu, Lidong
Gilbertson, Timothy A.
机构
[1] Utah State Univ, Dept Biol, Logan, UT 84322 USA
[2] Utah State Univ, Ctr Adv Nutr, Logan, UT 84322 USA
[3] Univ Arkansas Med Sci, Dept Pediat, Little Rock, AR 72202 USA
[4] Univ British Columbia, Brain Res Ctr, Vancouver, BC V6T 2B5, Canada
关键词
aquaporin; immunocytochemistry; RT-PCR; taste; water;
D O I
10.1093/chemse/bjm006
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
In order to gain insight into the molecular mechanisms that allow taste cells to respond to changes in their osmotic environment, we have used primarily immunocytochemical and molecular approaches to look for evidence of the presence of aquaporin-like water channels in taste cells. Labeling of isolated taste buds from the fungiform, foliate, and vallate papillae in rat tongue with antibodies against several of the aquaporins (AQPs) revealed the presence of AQP1, AQP2, and AQP5 in taste cells from these areas. AQP3 antibodies failed to label isolated taste buds from any of the papillae. There was an apparent difference in the regional localization of AQP labeling within the taste bud. Antibodies against AQP1 and AQP2 labeled predominantly the basolateral membrane, whereas the AQP5 label was clearly evident on both the apical and basolateral membranes of cells within the taste bud. Double labeling revealed that AQP1 and AQP2 labeled many, but not all, of the same taste cells. Similar double-labeling experiments with anti-AQP2 and anti-AQP5 clearly showed that AQP5 was expressed on or near the apical membranes whereas AQP2 was absent from this area. The presence of these 3 types of AQPs in taste buds but not in non-taste bud-containing epithelia was confirmed using reverse transcription-polymerase chain reaction. Experiments using patch clamp recording showed that the AQP inhibitor, tetraethylammonium, significantly reduced hypoosmotic-induced currents in rat taste cells. We hypothesize that the AQPs may play roles both in the water movement underlying compensatory mechanisms for changes in extracellular osmolarity and, in the case of AQP5 in particular, in the gustatory response to water.
引用
收藏
页码:411 / 421
页数:11
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