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Frontiers in Physiology|June 25, 2015
Inherited macular degeneration-associated mutations in CNGB3 increase the ligand sensitivity and spontaneous open probability of cone cyclic nucleotide-gated channelsPeter C Meighan, Changhong Peng, Michael D VarnumNeuron|May 12, 2004
Subunit configuration of heteromeric cone cyclic nucleotide-gated channelsChanghong Peng, Elizabeth D Rich, Michael D VarnumGenetics|November 1, 1982
Organization and evolution of the mammalian genome: I. Polymorphism of H-2 linked lociJ H Nadeau, R L Collins, J KleinJournal of Inflammation|January 1, 1995
Genetic dissection of inflammatory responsesJ H Nadeau, L D Arbuckle, E SkameneMolecular Pharmacology|October 5, 2006
Regulation of human cone cyclic nucleotide-gated channels by endogenous phospholipids and exogenously applied phosphatidylinositol 3,4,5-trisphosphateScott R Bright, Elizabeth D Rich, Michael D VarnumThe Journal of General Physiology|March 27, 2013
Two structural components in CNGA3 support regulation of cone CNG channels by phosphoinositidesGucan Dai, Changhong Peng, Chunming Liu, et al.Molecular Vision|December 28, 2005
Disease-associated mutations in CNGB3 produce gain of function alterations in cone cyclic nucleotide-gated channelsScott R Bright, Travis E Brown, Michael D VarnumNeuron|September 1, 1995
Molecular mechanism for ligand discrimination of cyclic nucleotide-gated channelsM D Varnum, K D Black, W N ZagottaThe Biochemical Journal|October 14, 2011
Defective trafficking of cone photoreceptor CNG channels induces the unfolded protein response and ER-stress-associated cell deathDeborah L Duricka, R Lane Brown, Michael D VarnumExperimental Eye Research|December 1, 1989
Age-related changes in calpain II and calpastatin in rat lensM D Varnum, L L David, T R ShearerPageof 14