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P50 | author | Kazuichi Maruyama | Q47149002 |
P2093 | author name string | Yuji Tanaka | |
Koji M Nishiguchi | |||
Toru Nakazawa | |||
Masayuki Yasuda | |||
Satoru Tsuda | |||
Morin Ryu | |||
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RNA sequence reveals mouse retinal transcriptome changes early after axonal injury | Q35133718 | ||
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Age-related changes in the thickness of the human lamina cribrosa | Q35762804 | ||
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Glaucoma: thinking in new ways-a rôle for autonomous axonal self-destruction and other compartmentalised processes? | Q36161727 | ||
Microglial TIR-domain-containing adapter-inducing interferon-β (TRIF) deficiency promotes retinal ganglion cell survival and axon regeneration via nuclear factor-κB. | Q36317535 | ||
Identification and functional analysis of damage-induced neuronal endopeptidase (DINE), a nerve injury associated molecule. | Q36417125 | ||
DLK initiates a transcriptional program that couples apoptotic and regenerative responses to axonal injury. | Q36673264 | ||
An endothelin-1 induced model of optic nerve ischemia in the rabbit | Q36813939 | ||
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Deep cap analysis gene expression (CAGE): genome-wide identification of promoters, quantification of their expression, and network inference | Q37161387 | ||
Inhibition of oxidative stress by coenzyme Q10 increases mitochondrial mass and improves bioenergetic function in optic nerve head astrocytes | Q37299591 | ||
Cellular signaling and factors involved in Müller cell gliosis: neuroprotective and detrimental effects | Q37574340 | ||
DJ-1 and prevention of oxidative stress in Parkinson's disease and other age-related disorders | Q37581184 | ||
Defects of the lamina cribrosa in eyes with localized retinal nerve fiber layer loss | Q37626288 | ||
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Factors associated with focal lamina cribrosa defects in glaucoma | Q39311603 | ||
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Quantitative iTRAQ Analysis of Retinal Ganglion Cell Degeneration after Optic Nerve Crush | Q39744386 | ||
Neuronal injury-inducible gene is synergistically regulated by ATF3, c-Jun, and STAT3 through the interaction with Sp1 in damaged neurons | Q40025578 | ||
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Bcl-2 gene family in the nervous system | Q41369740 | ||
Overexpression of Sp1 transcription factor induces apoptosis. | Q42801586 | ||
Involvement of branched-chain amino acid aminotransferase (Bcat1/Eca39) in apoptosis | Q42811300 | ||
Inhibition of ASK1-p38 pathway prevents neural cell death following optic nerve injury. | Q42965247 | ||
PERK (eIF2alpha kinase) is required to activate the stress-activated MAPKs and induce the expression of immediate-early genes upon disruption of ER calcium homoeostasis | Q43226732 | ||
P4510 | describes a project that uses | edgeR | Q113334690 |
P407 | language of work or name | English | Q1860 |
P921 | main subject | transcriptome | Q252857 |
P304 | page(s) | 982 | |
P577 | publication date | 2014-11-18 | |
P1433 | published in | BMC Genomics | Q15765854 |
P1476 | title | Retinal transcriptome profiling at transcription start sites: a cap analysis of gene expression early after axonal injury | |
P478 | volume | 15 |
Q97069891 | Comprehensive identification of mRNA isoforms reveals the diversity of neural cell-surface molecules with roles in retinal development and disease |
Q36412409 | Identification and prediction of alternative transcription start sites that generate rod photoreceptor-specific transcripts from ubiquitously expressed genes |
Q38811655 | In vivo cellular imaging of various stress/response pathways using AAV following axonal injury in mice |
Q39786328 | Lens ER-stress response during cataract development in Mip-mutant mice |
Q52567289 | Maser: one-stop platform for NGS big data from analysis to visualization |
Q90345430 | Systems Genetics of Optic Nerve Axon Necrosis During Glaucoma |
Q37049659 | Transcriptome profiling of the rat retina after optic nerve transection |
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