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List of co-cited articles
884 articles co-cited >1



Times Cited
  Times     Co-cited
Similarity


The light response of ON bipolar neurons requires G[alpha]o.
A Dhingra, A Lyubarsky, M Jiang, E N Pugh, L Birnbaumer, P Sterling, N Vardi. J Neurosci 2000
158
59


Specific deficit of the ON response in visual transmission by targeted disruption of the mGluR6 gene.
M Masu, H Iwakabe, Y Tagawa, T Miyoshi, M Yamashita, Y Fukuda, H Sasaki, K Hiroi, Y Nakamura, R Shigemoto. Cell 1995
370
44


Developmentally regulated postsynaptic localization of a metabotropic glutamate receptor in rat rod bipolar cells.
A Nomura, R Shigemoto, Y Nakamura, N Okamoto, N Mizuno, S Nakanishi. Cell 1994
357
40

A transient receptor potential-like channel mediates synaptic transmission in rod bipolar cells.
Yin Shen, J Alexander Heimel, Maarten Kamermans, Neal S Peachey, Ronald G Gregg, Scott Nawy. J Neurosci 2009
155
39

TRPM1 is required for the depolarizing light response in retinal ON-bipolar cells.
Catherine W Morgans, Jianmei Zhang, Brett G Jeffrey, Steve M Nelson, Neal S Burke, Robert M Duvoisin, R Lane Brown. Proc Natl Acad Sci U S A 2009
204
37


TRPM1 is a component of the retinal ON bipolar cell transduction channel in the mGluR6 cascade.
Chieko Koike, Takehisa Obara, Yoshitsugu Uriu, Tomohiro Numata, Rikako Sanuki, Kentarou Miyata, Toshiyuki Koyasu, Shinji Ueno, Kazuo Funabiki, Akiko Tani,[...]. Proc Natl Acad Sci U S A 2010
201
36

Light response of retinal ON bipolar cells requires a specific splice variant of Galpha(o).
Anuradha Dhingra, Meisheng Jiang, Tian-Li Wang, Arkady Lyubarsky, Andrey Savchenko, Tehilla Bar-Yehuda, Peter Sterling, Lutz Birnbaumer, Noga Vardi. J Neurosci 2002
93
35


Localization of mGluR6 to dendrites of ON bipolar cells in primate retina.
N Vardi, R Duvoisin, G Wu, P Sterling. J Comp Neurol 2000
148
31


Night blindness and abnormal cone electroretinogram ON responses in patients with mutations in the GRM6 gene encoding mGluR6.
Thaddeus P Dryja, Terri L McGee, Eliot L Berson, Gerald A Fishman, Michael A Sandberg, Kenneth R Alexander, Deborah J Derlacki, Aruna S Rajagopalan. Proc Natl Acad Sci U S A 2005
168
25

Mutations in TRPM1 are a common cause of complete congenital stationary night blindness.
Maria M van Genderen, Mieke M C Bijveld, Yvonne B Claassen, Ralph J Florijn, Jillian N Pearring, Francoise M Meire, Maureen A McCall, Frans C C Riemslag, Ronald G Gregg, Arthur A B Bergen,[...]. Am J Hum Genet 2009
148
25


Mutations in GRM6 cause autosomal recessive congenital stationary night blindness with a distinctive scotopic 15-Hz flicker electroretinogram.
Christina Zeitz, Maria van Genderen, John Neidhardt, Ulrich F O Luhmann, Frank Hoeben, Ursula Forster, Katharina Wycisk, Gábor Mátyás, Carel B Hoyng, Frans Riemslag,[...]. Invest Ophthalmol Vis Sci 2005
108
24



TRPM1 is mutated in patients with autosomal-recessive complete congenital stationary night blindness.
Isabelle Audo, Susanne Kohl, Bart P Leroy, Francis L Munier, Xavier Guillonneau, Saddek Mohand-Saïd, Kinga Bujakowska, Emeline F Nandrot, Birgit Lorenz, Markus Preising,[...]. Am J Hum Genet 2009
163
23

Gbeta5 is required for normal light responses and morphology of retinal ON-bipolar cells.
Anjali Rao, Rebecca Dallman, Scott Henderson, Ching-Kang Chen. J Neurosci 2007
80
27

Retina-specific GTPase accelerator RGS11/G beta 5S/R9AP is a constitutive heterotrimer selectively targeted to mGluR6 in ON-bipolar neurons.
Yan Cao, Ikuo Masuho, Haruhisa Okawa, Keqiang Xie, Junko Asami, Paul J Kammermeier, Dennis M Maddox, Takahisa Furukawa, Takayoshi Inoue, Alapakkam P Sampath,[...]. J Neurosci 2009
67
31


Mutations in NYX, encoding the leucine-rich proteoglycan nyctalopin, cause X-linked complete congenital stationary night blindness.
N T Bech-Hansen, M J Naylor, T A Maybaum, R L Sparkes, B Koop, D G Birch, A A Bergen, C F Prinsen, R C Polomeno, A Gal,[...]. Nat Genet 2000
239
20

Gbeta5-RGS complexes co-localize with mGluR6 in retinal ON-bipolar cells.
Catherine W Morgans, Theodore G Wensel, R Lane Brown, Jorge A Perez-Leon, Ben Bearnot, Robert M Duvoisin. Eur J Neurosci 2007
56
35


Differential gene expression of TRPM1, the potential cause of congenital stationary night blindness and coat spotting patterns (LP) in the Appaloosa horse (Equus caballus).
Rebecca R Bellone, Samantha A Brooks, Lynne Sandmeyer, Barbara A Murphy, George Forsyth, Sheila Archer, Ernest Bailey, Bruce Grahn. Genetics 2008
109
18

Recessive mutations of the gene TRPM1 abrogate ON bipolar cell function and cause complete congenital stationary night blindness in humans.
Zheng Li, Panagiotis I Sergouniotis, Michel Michaelides, Donna S Mackay, Genevieve A Wright, Sophie Devery, Anthony T Moore, Graham E Holder, Anthony G Robson, Andrew R Webster. Am J Hum Genet 2009
127
18


Identification of a G-protein in depolarizing rod bipolar cells.
N Vardi, D F Matesic, D R Manning, P A Liebman, P Sterling. Vis Neurosci 1993
64
26

The complete form of X-linked congenital stationary night blindness is caused by mutations in a gene encoding a leucine-rich repeat protein.
C M Pusch, C Zeitz, O Brandau, K Pesch, H Achatz, S Feil, C Scharfe, J Maurer, F K Jacobi, A Pinckers,[...]. Nat Genet 2000
186
17

A role for nyctalopin, a small leucine-rich repeat protein, in localizing the TRP melastatin 1 channel to retinal depolarizing bipolar cell dendrites.
Jillian N Pearring, Pasano Bojang, Yin Shen, Chieko Koike, Takahisa Furukawa, Scott Nawy, Ronald G Gregg. J Neurosci 2011
64
26


Congenital stationary night blindness with negative electroretinogram. A new classification.
Y Miyake, K Yagasaki, M Horiguchi, Y Kawase, T Kanda. Arch Ophthalmol 1986
352
16

Nyctalopin expression in retinal bipolar cells restores visual function in a mouse model of complete X-linked congenital stationary night blindness.
Ronald G Gregg, Maarten Kamermans, Jan Klooster, Peter D Lukasiewicz, Neal S Peachey, Kirstan A Vessey, Maureen A McCall. J Neurophysiol 2007
72
22

GPR179 is required for depolarizing bipolar cell function and is mutated in autosomal-recessive complete congenital stationary night blindness.
Neal S Peachey, Thomas A Ray, Ralph Florijn, Lucy B Rowe, Trijntje Sjoerdsma, Susana Contreras-Alcantara, Kenkichi Baba, Gianluca Tosini, Nikita Pozdeyev, P Michael Iuvone,[...]. Am J Hum Genet 2012
94
15




Localization of nyctalopin in the mammalian retina.
Catherine W Morgans, Gaoying Ren, Lakshmi Akileswaran. Eur J Neurosci 2006
56
25

TRPM1 mutations are associated with the complete form of congenital stationary night blindness.
Makoto Nakamura, Rikako Sanuki, Tetsuhiro R Yasuma, Akishi Onishi, Koji M Nishiguchi, Chieko Koike, Mikiko Kadowaki, Mineo Kondo, Yozo Miyake, Takahisa Furukawa. Mol Vis 2010
74
18

Whole-exome sequencing identifies LRIT3 mutations as a cause of autosomal-recessive complete congenital stationary night blindness.
Christina Zeitz, Samuel G Jacobson, Christian P Hamel, Kinga Bujakowska, Marion Neuillé, Elise Orhan, Xavier Zanlonghi, Marie-Elise Lancelot, Christelle Michiels, Sharon B Schwartz,[...]. Am J Hum Genet 2013
89
15



Whole-exome sequencing identifies mutations in GPR179 leading to autosomal-recessive complete congenital stationary night blindness.
Isabelle Audo, Kinga Bujakowska, Elise Orhan, Charlotte M Poloschek, Sabine Defoort-Dhellemmes, Isabelle Drumare, Susanne Kohl, Tien D Luu, Odile Lecompte, Eberhart Zrenner,[...]. Am J Hum Genet 2012
89
14




Loss-of-function mutations in a calcium-channel alpha1-subunit gene in Xp11.23 cause incomplete X-linked congenital stationary night blindness.
N T Bech-Hansen, M J Naylor, T A Maybaum, W G Pearce, B Koop, G A Fishman, M Mets, M A Musarella, K M Boycott. Nat Genet 1998
372
12

Identification of the gene and the mutation responsible for the mouse nob phenotype.
Ronald G Gregg, Suparna Mukhopadhyay, Sophie I Candille, Sherry L Ball, Machelle T Pardue, Maureen A McCall, Neal S Peachey. Invest Ophthalmol Vis Sci 2003
85
14


Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.