Year |
Citation |
Score |
2020 |
Hervas R, Rau MJ, Park Y, Zhang W, Murzin AG, Fitzpatrick JAJ, Scheres SHW, Si K. Cryo-EM structure of a neuronal functional amyloid implicated in memory persistence in . Science (New York, N.Y.). 367: 1230-1234. PMID 32165583 DOI: 10.1126/Science.Aba3526 |
0.461 |
|
2019 |
Nil Z, Millán RH, Gerbich T, Leal P, Yu Z, Saraf A, Sardiu M, Lange JJ, Yi K, Unruh J, Slaughter B, Si K. Amyloid-like Assembly Activates a Phosphatase in the Developing Drosophila Embryo. Cell. 178: 1403-1420.e21. PMID 31491385 DOI: 10.1016/J.Cell.2019.08.019 |
0.346 |
|
2018 |
Barajas-Azpeleta R, Wu J, Gill J, Welte R, Seidel C, McKinney S, Dissel S, Si K. Antimicrobial peptides modulate long-term memory. Plos Genetics. 14: e1007440. PMID 30312294 DOI: 10.1371/Journal.Pgen.1007440 |
0.385 |
|
2018 |
Li L, McGinnis JP, Si K. Translational Control by Prion-like Proteins. Trends in Cell Biology. 28: 494-505. PMID 29530524 DOI: 10.1016/J.Tcb.2018.02.002 |
0.456 |
|
2017 |
Gill J, Park Y, McGinnis JP, Perez-Sanchez C, Blanchette M, Si K. Regulated Intron Removal Integrates Motivational State and Experience. Cell. 169: 836-848.e15. PMID 28525754 DOI: 10.1016/J.Cell.2017.05.006 |
0.477 |
|
2016 |
McGinnis JP, Jiang H, Agha MA, Perez Sanchez C, Lange JJ, Yu Z, Marion-Poll F, Si K. Immediate perception of a reward is distinct from the reward's long-term salience. Elife. 5. PMID 28005005 DOI: 10.7554/Elife.22283 |
0.345 |
|
2016 |
Li L, Sanchez CP, Slaughter BD, Zhao Y, Khan MR, Unruh JR, Rubinstein B, Si K. A Putative Biochemical Engram of Long-Term Memory. Current Biology : Cb. PMID 27818176 DOI: 10.1016/J.Cub.2016.09.054 |
0.43 |
|
2016 |
Lee SH, Shim J, Cheong YH, Choi SL, Jun YW, Lee SH, Chae YS, Han JH, Lee YS, Lee JA, Lim CS, Si K, Kassabov S, Antonov I, Kandel ER, et al. ApCPEB4, a non-prion domain containing homolog of ApCPEB, is involved in the initiation of long-term facilitation. Molecular Brain. 9: 91. PMID 27770822 DOI: 10.1186/S13041-016-0271-X |
0.672 |
|
2016 |
Si K, Kandel ER. The Role of Functional Prion-Like Proteins in the Persistence of Memory. Cold Spring Harbor Perspectives in Biology. 8. PMID 27037416 DOI: 10.1101/Cshperspect.A021774 |
0.597 |
|
2016 |
Hervás R, Li L, Majumdar A, Fernández-Ramírez Mdel C, Unruh JR, Slaughter BD, Galera-Prat A, Santana E, Suzuki M, Nagai Y, Bruix M, Casas-Tintó S, Menéndez M, Laurents DV, Si K, et al. Molecular Basis of Orb2 Amyloidogenesis and Blockade of Memory Consolidation. Plos Biology. 14: e1002361. PMID 26812143 DOI: 10.1371/Journal.Pbio.1002361 |
0.426 |
|
2016 |
McGinnis JP, Jiang H, Agha MA, Sanchez CP, Lange J, Yu Z, Marion-Poll F, Si K. Author response: Immediate perception of a reward is distinct from the reward’s long-term salience Elife. DOI: 10.7554/Elife.22283.020 |
0.318 |
|
2015 |
Khan MR, Li L, Pérez-Sánchez C, Saraf A, Florens L, Slaughter BD, Unruh JR, Si K. Amyloidogenic Oligomerization Transforms Drosophila Orb2 from a Translation Repressor to an Activator. Cell. 163: 1468-83. PMID 26638074 DOI: 10.1016/J.Cell.2015.11.020 |
0.531 |
|
2015 |
Si K. Prions: what are they good for? Annual Review of Cell and Developmental Biology. 31: 149-69. PMID 26407211 DOI: 10.1146/Annurev-Cellbio-100913-013409 |
0.39 |
|
2014 |
White-Grindley E, Li L, Mohammad Khan R, Ren F, Saraf A, Florens L, Si K. Contribution of Orb2A Stability in Regulated Amyloid-Like Oligomerization of Drosophila Orb2 Plos Biology. 12. PMID 24523662 DOI: 10.1371/Journal.Pbio.1001786 |
0.492 |
|
2012 |
Majumdar A, Cesario WC, White-Grindley E, Jiang H, Ren F, Khan MR, Li L, Choi EML, Kannan K, Guo F, Unruh J, Slaughter B, Si K. Critical role of amyloid-like oligomers of Drosophila Orb2 in the persistence of memory Cell. 148: 515-529. PMID 22284910 DOI: 10.1016/J.Cell.2012.01.004 |
0.511 |
|
2010 |
Mastushita-Sakai T, White-Grindley E, Samuelson J, Seidel C, Si K. Drosophila Orb2 targets genes involved in neuronal growth, synapse formation, and protein turnover Proceedings of the National Academy of Sciences of the United States of America. 107: 11987-11992. PMID 20547833 DOI: 10.1073/Pnas.1004433107 |
0.574 |
|
2010 |
Si K, Choi YB, White-Grindley E, Majumdar A, Kandel ER. Aplysia CPEB can form prion-like multimers in sensory neurons that contribute to long-term facilitation. Cell. 140: 421-35. PMID 20144764 DOI: 10.1016/J.Cell.2010.01.008 |
0.623 |
|
2008 |
Miniaci MC, Kim JH, Puthanveettil SV, Si K, Zhu H, Kandel ER, Bailey CH. Sustained CPEB-dependent local protein synthesis is required to stabilize synaptic growth for persistence of long-term facilitation in Aplysia. Neuron. 59: 1024-36. PMID 18817739 DOI: 10.1016/J.Neuron.2008.07.036 |
0.707 |
|
2006 |
White-Grindley E, Si K. RISC-y memories Cell. 124: 23-26. PMID 16413478 DOI: 10.1016/J.Cell.2005.12.027 |
0.512 |
|
2004 |
Si K, Lindquist S, Kandel E. A possible epigenetic mechanism for the persistence of memory. Cold Spring Harbor Symposia On Quantitative Biology. 69: 497-8. PMID 16117686 DOI: 10.1101/Sqb.2004.69.497 |
0.467 |
|
2004 |
Bailey CH, Kandel ER, Si K. The persistence of long-term memory: a molecular approach to self-sustaining changes in learning-induced synaptic growth. Neuron. 44: 49-57. PMID 15450159 DOI: 10.1016/J.Neuron.2004.09.017 |
0.586 |
|
2003 |
Si K, Giustetto M, Etkin A, Hsu R, Janisiewicz AM, Miniaci MC, Kim JH, Zhu H, Kandel ER. A neuronal isoform of CPEB regulates local protein synthesis and stabilizes synapse-specific long-term facilitation in aplysia. Cell. 115: 893-904. PMID 14697206 DOI: 10.1016/S0092-8674(03)01021-3 |
0.7 |
|
2003 |
Si K, Lindquist S, Kandel ER. A neuronal isoform of the aplysia CPEB has prion-like properties. Cell. 115: 879-91. PMID 14697205 DOI: 10.1016/S0092-8674(03)01020-1 |
0.62 |
|
2003 |
Giustetto M, Hegde AN, Si K, Casadio A, Inokuchi K, Pei W, Kandel ER, Schwartz JH. Axonal transport of eukaryotic translation elongation factor 1alpha mRNA couples transcription in the nucleus to long-term facilitation at the synapse. Proceedings of the National Academy of Sciences of the United States of America. 100: 13680-5. PMID 14578450 DOI: 10.1073/Pnas.1835674100 |
0.66 |
|
2003 |
Basu U, Si K, Deng H, Maitra U. Phosphorylation of mammalian eukaryotic translation initiation factor 6 and its Saccharomyces cerevisiae homologue Tif6p: evidence that phosphorylation of Tif6p regulates its nucleocytoplasmic distribution and is required for yeast cell growth. Molecular and Cellular Biology. 23: 6187-99. PMID 12917340 DOI: 10.1128/Mcb.23.17.6187-6199.2003 |
0.306 |
|
2003 |
Theis M, Si K, Kandel ER. Two previously undescribed members of the mouse CPEB family of genes and their inducible expression in the principal cell layers of the hippocampus. Proceedings of the National Academy of Sciences of the United States of America. 100: 9602-7. PMID 12871996 DOI: 10.1073/Pnas.1133424100 |
0.517 |
|
2001 |
Basu U, Si K, Warner JR, Maitra U. The Saccharomyces cerevisiae TIF6 gene encoding translation initiation factor 6 is required for 60S ribosomal subunit biogenesis. Molecular and Cellular Biology. 21: 1453-62. PMID 11238882 DOI: 10.1128/Mcb.21.5.1453-1462.2001 |
0.356 |
|
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