A citation-based method for searching scientific literature

Ravindra N Singh, Matthew D Howell, Eric W Ottesen, Natalia N Singh. Biochim Biophys Acta Gene Regul Mech 2017
Times Cited: 101







List of co-cited articles
1107 articles co-cited >1



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  Times     Co-cited
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Identification and characterization of a spinal muscular atrophy-determining gene.
S Lefebvre, L Bürglen, S Reboullet, O Clermont, P Burlet, L Viollet, B Benichou, C Cruaud, P Millasseau, M Zeviani. Cell 1995
68

A single nucleotide in the SMN gene regulates splicing and is responsible for spinal muscular atrophy.
C L Lorson, E Hahnen, E J Androphy, B Wirth. Proc Natl Acad Sci U S A 1999
49

A single nucleotide difference that alters splicing patterns distinguishes the SMA gene SMN1 from the copy gene SMN2.
U R Monani, C L Lorson, D W Parsons, T W Prior, E J Androphy, A H Burghes, J D McPherson. Hum Mol Genet 1999
644
35

Nusinersen versus Sham Control in Infantile-Onset Spinal Muscular Atrophy.
Richard S Finkel, Eugenio Mercuri, Basil T Darras, Anne M Connolly, Nancy L Kuntz, Janbernd Kirschner, Claudia A Chiriboga, Kayoko Saito, Laurent Servais, Eduardo Tizzano,[...]. N Engl J Med 2017
749
32

Treatment of infantile-onset spinal muscular atrophy with nusinersen: a phase 2, open-label, dose-escalation study.
Richard S Finkel, Claudia A Chiriboga, Jiri Vajsar, John W Day, Jacqueline Montes, Darryl C De Vivo, Mason Yamashita, Frank Rigo, Gene Hung, Eugene Schneider,[...]. Lancet 2016
490
28

Peripheral SMN restoration is essential for long-term rescue of a severe spinal muscular atrophy mouse model.
Yimin Hua, Kentaro Sahashi, Frank Rigo, Gene Hung, Guy Horev, C Frank Bennett, Adrian R Krainer. Nature 2011
451
27

Splicing of a critical exon of human Survival Motor Neuron is regulated by a unique silencer element located in the last intron.
Nirmal K Singh, Natalia N Singh, Elliot J Androphy, Ravindra N Singh. Mol Cell Biol 2006
291
26


A mouse model for spinal muscular atrophy.
H M Hsieh-Li, J G Chang, Y J Jong, M H Wu, N M Wang, C H Tsai, H Li. Nat Genet 2000
523
23

Single-Dose Gene-Replacement Therapy for Spinal Muscular Atrophy.
Jerry R Mendell, Samiah Al-Zaidy, Richard Shell, W Dave Arnold, Louise R Rodino-Klapac, Thomas W Prior, Linda Lowes, Lindsay Alfano, Katherine Berry, Kathleen Church,[...]. N Engl J Med 2017
819
23

Nusinersen versus Sham Control in Later-Onset Spinal Muscular Atrophy.
Eugenio Mercuri, Basil T Darras, Claudia A Chiriboga, John W Day, Craig Campbell, Anne M Connolly, Susan T Iannaccone, Janbernd Kirschner, Nancy L Kuntz, Kayoko Saito,[...]. N Engl J Med 2018
501
23

Correlation between severity and SMN protein level in spinal muscular atrophy.
S Lefebvre, P Burlet, Q Liu, S Bertrandy, O Clermont, A Munnich, G Dreyfuss, J Melki. Nat Genet 1997
801
22

Smn, the spinal muscular atrophy-determining gene product, modulates axon growth and localization of beta-actin mRNA in growth cones of motoneurons.
Wilfried Rossoll, Sibylle Jablonka, Catia Andreassi, Ann-Kathrin Kröning, Kathrin Karle, Umrao R Monani, Michael Sendtner. J Cell Biol 2003
462
22

Spinal muscular atrophy: going beyond the motor neuron.
Gillian Hamilton, Thomas H Gillingwater. Trends Mol Med 2013
211
22

How the discovery of ISS-N1 led to the first medical therapy for spinal muscular atrophy.
N N Singh, M D Howell, E J Androphy, R N Singh. Gene Ther 2017
72
30

Antisense masking of an hnRNP A1/A2 intronic splicing silencer corrects SMN2 splicing in transgenic mice.
Yimin Hua, Timothy A Vickers, Hazeem L Okunola, C Frank Bennett, Adrian R Krainer. Am J Hum Genet 2008
338
21

Severe impairment of male reproductive organ development in a low SMN expressing mouse model of spinal muscular atrophy.
Eric W Ottesen, Matthew D Howell, Natalia N Singh, Joonbae Seo, Elizabeth M Whitley, Ravindra N Singh. Sci Rep 2016
39
48

SMN deficiency causes tissue-specific perturbations in the repertoire of snRNAs and widespread defects in splicing.
Zhenxi Zhang, Francesco Lotti, Kimberly Dittmar, Ihab Younis, Lili Wan, Mumtaz Kasim, Gideon Dreyfuss. Cell 2008
446
19

Plastin 3 is a protective modifier of autosomal recessive spinal muscular atrophy.
Gabriela E Oprea, Sandra Kröber, Michelle L McWhorter, Wilfried Rossoll, Stefan Müller, Michael Krawczak, Gary J Bassell, Christine E Beattie, Brunhilde Wirth. Science 2008
330
19


Inactivation of the survival motor neuron gene, a candidate gene for human spinal muscular atrophy, leads to massive cell death in early mouse embryos.
B Schrank, R Götz, J M Gunnersen, J M Ure, K V Toyka, A G Smith, M Sendtner. Proc Natl Acad Sci U S A 1997
499
18

Molecular Mechanisms of Neurodegeneration in Spinal Muscular Atrophy.
Saif Ahmad, Kanchan Bhatia, Annapoorna Kannan, Laxman Gangwani. J Exp Neurosci 2016
43
39



Mechanistic principles of antisense targets for the treatment of spinal muscular atrophy.
Natalia N Singh, Brian M Lee, Christine J DiDonato, Ravindra N Singh. Future Med Chem 2015
38
42

An intronic structure enabled by a long-distance interaction serves as a novel target for splicing correction in spinal muscular atrophy.
Natalia N Singh, Mariah N Lawler, Eric W Ottesen, Daya Upreti, Jennifer R Kaczynski, Ravindra N Singh. Nucleic Acids Res 2013
49
32


Glucose metabolism and pancreatic defects in spinal muscular atrophy.
Melissa Bowerman, Kathryn J Swoboda, John-Paul Michalski, Gen-Sheng Wang, Courtney Reeks, Ariane Beauvais, Kelley Murphy, John Woulfe, Robert A Screaton, Fraser W Scott,[...]. Ann Neurol 2012
97
16

The human centromeric survival motor neuron gene (SMN2) rescues embryonic lethality in Smn(-/-) mice and results in a mouse with spinal muscular atrophy.
U R Monani, M Sendtner, D D Coovert, D W Parsons, C Andreassi, T T Le, S Jablonka, B Schrank, W Rossoll, T W Prior,[...]. Hum Mol Genet 2000
543
16

SMNDelta7, the major product of the centromeric survival motor neuron (SMN2) gene, extends survival in mice with spinal muscular atrophy and associates with full-length SMN.
Thanh T Le, Lan T Pham, Matthew E R Butchbach, Honglai L Zhang, Umrao R Monani, Daniel D Coovert, Tatiana O Gavrilina, Lei Xing, Gary J Bassell, Arthur H M Burghes. Hum Mol Genet 2005
427
16

Discovery of Risdiplam, a Selective Survival of Motor Neuron-2 ( SMN2) Gene Splicing Modifier for the Treatment of Spinal Muscular Atrophy (SMA).
Hasane Ratni, Martin Ebeling, John Baird, Stefanie Bendels, Johan Bylund, Karen S Chen, Nora Denk, Zhihua Feng, Luke Green, Melanie Guerard,[...]. J Med Chem 2018
122
16

Antisense oligonucleotides delivered to the mouse CNS ameliorate symptoms of severe spinal muscular atrophy.
Marco A Passini, Jie Bu, Amy M Richards, Cathrine Kinnecom, S Pablo Sardi, Lisa M Stanek, Yimin Hua, Frank Rigo, John Matson, Gene Hung,[...]. Sci Transl Med 2011
325
15

Antisense correction of SMN2 splicing in the CNS rescues necrosis in a type III SMA mouse model.
Yimin Hua, Kentaro Sahashi, Gene Hung, Frank Rigo, Marco A Passini, C Frank Bennett, Adrian R Krainer. Genes Dev 2010
388
15

Spinal muscular atrophy.
Mitchell R Lunn, Ching H Wang. Lancet 2008
412
15

Survival Motor Neuron (SMN) protein is required for normal mouse liver development.
Eva Szunyogova, Haiyan Zhou, Gillian K Maxwell, Rachael A Powis, Francesco Muntoni, Thomas H Gillingwater, Simon H Parson. Sci Rep 2016
47
31

Advances in therapeutic development for spinal muscular atrophy.
Matthew D Howell, Natalia N Singh, Ravindra N Singh. Future Med Chem 2014
36
41


Regulation of SMN protein stability.
Barrington G Burnett, Eric Muñoz, Animesh Tandon, Deborah Y Kwon, Charlotte J Sumner, Kenneth H Fischbeck. Mol Cell Biol 2009
183
15


Gender-Specific Amelioration of SMA Phenotype upon Disruption of a Deep Intronic Structure by an Oligonucleotide.
Matthew D Howell, Eric W Ottesen, Natalia N Singh, Rachel L Anderson, Ravindra N Singh. Mol Ther 2017
19
78

The Power of Human Protective Modifiers: PLS3 and CORO1C Unravel Impaired Endocytosis in Spinal Muscular Atrophy and Rescue SMA Phenotype.
Seyyedmohsen Hosseinibarkooie, Miriam Peters, Laura Torres-Benito, Raphael H Rastetter, Kristina Hupperich, Andrea Hoffmann, Natalia Mendoza-Ferreira, Anna Kaczmarek, Eva Janzen, Janine Milbradt,[...]. Am J Hum Genet 2016
95
15

Neurocalcin Delta Suppression Protects against Spinal Muscular Atrophy in Humans and across Species by Restoring Impaired Endocytosis.
Markus Riessland, Anna Kaczmarek, Svenja Schneider, Kathryn J Swoboda, Heiko Löhr, Cathleen Bradler, Vanessa Grysko, Maria Dimitriadi, Seyyedmohsen Hosseinibarkooie, Laura Torres-Benito,[...]. Am J Hum Genet 2017
87
17

Essential role for the SMN complex in the specificity of snRNP assembly.
Livio Pellizzoni, Jeongsik Yong, Gideon Dreyfuss. Science 2002
388
15

Rescue of the spinal muscular atrophy phenotype in a mouse model by early postnatal delivery of SMN.
Kevin D Foust, Xueyong Wang, Vicki L McGovern, Lyndsey Braun, Adam K Bevan, Amanda M Haidet, Thanh T Le, Pablo R Morales, Mark M Rich, Arthur H M Burghes,[...]. Nat Biotechnol 2010
499
15

The role of survival motor neuron protein (SMN) in protein homeostasis.
Helena Chaytow, Yu-Ting Huang, Thomas H Gillingwater, Kiterie M E Faller. Cell Mol Life Sci 2018
55
27

Dysregulation of synaptogenesis genes antecedes motor neuron pathology in spinal muscular atrophy.
Zhenxi Zhang, Anna Maria Pinto, Lili Wan, Wei Wang, Michael G Berg, Isabela Oliva, Larry N Singh, Christopher Dengler, Zhi Wei, Gideon Dreyfuss. Proc Natl Acad Sci U S A 2013
119
14


Oxidative Stress Triggers Body-Wide Skipping of Multiple Exons of the Spinal Muscular Atrophy Gene.
Joonbae Seo, Natalia N Singh, Eric W Ottesen, Senthilkumar Sivanesan, Maria Shishimorova, Ravindra N Singh. PLoS One 2016
24
58

TIA1 prevents skipping of a critical exon associated with spinal muscular atrophy.
Natalia N Singh, Joonbae Seo, Eric W Ottesen, Maria Shishimorova, Dhruva Bhattacharya, Ravindra N Singh. Mol Cell Biol 2011
56
25

A novel human-specific splice isoform alters the critical C-terminus of Survival Motor Neuron protein.
Joonbae Seo, Natalia N Singh, Eric W Ottesen, Brian M Lee, Ravindra N Singh. Sci Rep 2016
23
60


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.