Depolarizing bipolar cell dysfunction due to a Trpm1 point mutation

被引:37
|
作者
Peachey, Neal S. [1 ,2 ,3 ]
Pearring, Jillian N. [4 ]
Bojang, Pasano, Jr. [4 ]
Hirschtritt, Matthew E. [3 ]
Sturgill-Short, Gwen [1 ]
Ray, Thomas A. [4 ]
Furukawa, Takahisa [5 ,6 ]
Koike, Chieko [5 ]
Goldberg, Andrew F. X. [7 ]
Shen, Yin [8 ]
McCall, Maureen A. [9 ]
Nawy, Scott [8 ]
Nishina, Patsy M. [10 ]
Gregg, Ronald G. [4 ,9 ]
机构
[1] Louis Stokes Cleveland Dept Vet Affairs Med Ctr, Cleveland, OH USA
[2] Cleveland Clin, Cole Eye Inst, Cleveland, OH 44106 USA
[3] Case Western Reserve Univ, Cleveland Clin, Lerner Coll Med, Cleveland, OH 44106 USA
[4] Univ Louisville, Dept Biochem & Mol Biol, Louisville, KY 40292 USA
[5] Osaka Biosci Inst, Dept Dev Biol, Osaka, Japan
[6] Osaka Biosci Inst, JST CREST, Osaka, Japan
[7] Oakland Univ, Eye Res Inst, Rochester, MI USA
[8] Albert Einstein Coll Med, Dept Neurosci, New York, NY USA
[9] Univ Louisville, Dept Ophthalmol & Visual Sci, Louisville, KY 40292 USA
[10] Jackson Lab, Bar Harbor, ME 04609 USA
基金
美国国家卫生研究院;
关键词
TRP channel; electroretinogram; congenital stationary night blindness; depolarizing bipolar cell; STATIONARY NIGHT BLINDNESS; OUTER PLEXIFORM LAYER; RICH REPEAT PROTEIN; FUNCTIONAL ABNORMALITIES; MOUSE MODEL; CONE ELECTRORETINOGRAM; SYNAPTIC-TRANSMISSION; VISUAL RESPONSES; COMPLETE FORM; CHANNEL;
D O I
10.1152/jn.00137.2012
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Peachey NS, Pearring JN, Bojang P Jr, Hirschtritt ME, Sturgill-Short G, Ray TA, Furukawa T, Koike C, Goldberg AF, Shen Y, McCall MA, Nawy S, Nishina PM, Gregg RG. Depolarizing bipolar cell dysfunction due to a Trpm1 point mutation. J Neurophysiol 108: 2442-2451, 2012. First published August 15, 2012; doi:10.1152/jn.00137.2012.-Mutations in TRPM1 are found in humans with an autosomal recessive form of complete congenital stationary night blindness (cCSNB). The Trpm1(-/-) mouse has been an important animal model for this condition. Here we report a new mouse mutant, tvrm27, identified in a chemical mutagenesis screen. Genetic mapping of the no b-wave electroretinogram (ERG) phenotype of tvrm27 localized the mutation to a chromosomal region that included Trpm1. Complementation testing with Trpm1(-/-) mice confirmed a mutation in Trpm1. Sequencing identified a nucleotide change in exon 23, converting a highly conserved alanine within the pore domain to threonine (p. A1068T). Consistent with prior studies of Trpm1(-/-) mice, no anatomical changes were noted in the Trpm1(tvrm27/tvrm27) retina. The Trpm1(tvrm27/tvrm27) phenotype is distinguished from that of Trpm1(-/-) by the retention of TRPM1 expression on the dendritic tips of depolarizing bipolar cells (DBCs). While ERG b-wave amplitudes of Trpm1(+/-) heterozygotes are comparable to wild type, those of Trpm1(+/tvrm27) mice are reduced by 32%. A similar reduction in the response of Trpm1(+/tvrm27) DBCs to LY341495 or capsaicin is evident in whole cell recordings. These data indicate that the p. A1068T mutant TRPM1 acts as a dominant negative with respect to TRPM1 channel function. Furthermore, these data indicate that the number of functional TRPM1 channels at the DBC dendritic tips is a key factor in defining DBC response amplitude. The Trpm1(tvrm27/tvrm27) mutant will be useful for elucidating the role of TRPM1 in DBC signal transduction, for determining how Trpm1 mutations impact central visual processing, and for evaluating experimental therapies for cCSNB.
引用
收藏
页码:2442 / 2451
页数:10
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