scholarly article | Q13442814 |
P819 | ADS bibcode | 2006PNAS..103.3890A |
P356 | DOI | 10.1073/PNAS.0508214103 |
P932 | PMC publication ID | 1383502 |
P698 | PubMed publication ID | 16505381 |
P5875 | ResearchGate publication ID | 7273056 |
P50 | author | Matthew Brooks | Q83229415 |
Anand Swaroop | Q30506132 | ||
P2093 | author name string | Hong Cheng | |
Masayuki Akimoto | |||
Ritu Khanna | |||
Alan J Mears | |||
Sepideh Zareparsi | |||
Yuezhou Jing | |||
Alfred Hero | |||
Joseph A Brzezinski | |||
Dongxiao Zhu | |||
Tom Glaser | |||
Elena Filippova | |||
Edwin C T Oh | |||
Jose-Luis Linares | |||
P2860 | cites work | Regulatory gene networks and the properties of the developmental process | Q34760388 |
Cone-like morphological, molecular, and electrophysiological features of the photoreceptors of the Nrl knockout mouse | Q35861721 | ||
Roles of homeobox and bHLH genes in specification of a retinal cell type. | Q43550220 | ||
Molecular evolution of the cone visual pigments in the pure rod-retina of the nocturnal gecko, Gekko gekko | Q43759869 | ||
DNA synthesis and cell population kinetics in embryonal histogenesis of the retina in mice | Q44519450 | ||
Transgenic mice expressing Cre-recombinase specifically in M- or S-cone photoreceptors | Q44703247 | ||
Global gene expression analysis of the developing postnatal mouse retina | Q44777414 | ||
Recruitment of the rod pathway by cones in the absence of rods. | Q45030478 | ||
Cell differentiation in the retina of the mouse | Q45193462 | ||
Phylogenomic analysis and expression patterns of large Maf genes in Xenopus tropicalis provide new insights into the functional evolution of the gene family in osteichthyans | Q46368750 | ||
Cell proliferation during postnatal development of the retina in the mouse. | Q48464128 | ||
False Discovery Rate–Adjusted Multiple Confidence Intervals for Selected Parameters | Q56622260 | ||
Two phases of rod photoreceptor differentiation during rat retinal development | Q57742125 | ||
Rods and cones in the mouse retina. II. Autoradiographic analysis of cell generation using tritiated thymidine | Q66961734 | ||
Selective lectin binding of the developing mouse retina | Q71105052 | ||
Monoclonal antibodies to rhodopsin: characterization, cross-reactivity, and application as structural probes | Q72694659 | ||
Giving in to the blues | Q73401333 | ||
Importance of intrinsic mechanisms in cell fate decisions in the developing rat retina | Q79349334 | ||
Genomic analysis of mouse retinal development | Q21146415 | ||
Signal Transduction and the Control of Gene Expression | Q22065837 | ||
The leucine zipper of NRL interacts with the CRX homeodomain. A possible mechanism of transcriptional synergy in rhodopsin regulation | Q22254574 | ||
A conserved retina-specific gene encodes a basic motif/leucine zipper domain | Q24297019 | ||
The basic motif-leucine zipper transcription factor Nrl can positively regulate rhodopsin gene expression | Q24316005 | ||
Recessive NRL mutations in patients with clumped pigmentary retinal degeneration and relative preservation of blue cone function | Q24558776 | ||
Cluster analysis and display of genome-wide expression patterns | Q24644463 | ||
Minimum information about a microarray experiment (MIAME)-toward standards for microarray data | Q27860569 | ||
Exploration, normalization, and summaries of high density oligonucleotide array probe level data | Q27861098 | ||
A mutation in NRL is associated with autosomal dominant retinitis pigmentosa | Q28140725 | ||
Multiple phosphorylated isoforms of NRL are expressed in rod photoreceptors | Q28209552 | ||
Crx, a novel Otx-like paired-homeodomain protein, binds to and transactivates photoreceptor cell-specific genes | Q28255968 | ||
Math5 is required for retinal ganglion cell and optic nerve formation | Q28345639 | ||
Requirement for math5 in the development of retinal ganglion cells | Q28345916 | ||
Expression profiling of the developing and mature Nrl-/- mouse retina: identification of retinal disease candidates and transcriptional regulatory targets of Nrl | Q28591943 | ||
Nrl is required for rod photoreceptor development | Q28595099 | ||
affy--analysis of Affymetrix GeneChip data at the probe level | Q29547353 | ||
Transcription regulation and animal diversity | Q29618752 | ||
Primary structures of chicken cone visual pigments: vertebrate rhodopsins have evolved out of cone visual pigments | Q30991232 | ||
GeneCluster 2.0: an advanced toolset for bioarray analysis | Q31051723 | ||
A thyroid hormone receptor that is required for the development of green cone photoreceptors | Q31804576 | ||
Gene expression in the developing mouse retina by EST sequencing and microarray analysis | Q32060903 | ||
Photoreceptor-specific nuclear receptor NR2E3 functions as a transcriptional activator in rod photoreceptors | Q33203655 | ||
Cell fate determination in the vertebrate retina | Q33564487 | ||
Photoreceptor distribution in the retinas of subprimate mammals. | Q33857218 | ||
Soluble factors and the development of rod photoreceptors | Q33892197 | ||
Nrl and Sp nuclear proteins mediate transcription of rod-specific cGMP-phosphodiesterase beta-subunit gene: involvement of multiple response elements | Q34082975 | ||
Vertebrate neural cell-fate determination: lessons from the retina | Q34185937 | ||
Ciliary photoreceptors with a vertebrate-type opsin in an invertebrate brain. | Q34363141 | ||
Transcription initiation: imposing specificity by localization | Q34471514 | ||
P433 | issue | 10 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | photoreceptor protein | Q7187894 |
P304 | page(s) | 3890-3895 | |
P577 | publication date | 2006-02-27 | |
P1433 | published in | Proceedings of the National Academy of Sciences of the United States of America | Q1146531 |
P1476 | title | Targeting of GFP to newborn rods by Nrl promoter and temporal expression profiling of flow-sorted photoreceptors | |
P478 | volume | 103 |
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Q35828406 | Effective transplantation of photoreceptor precursor cells selected via cell surface antigen expression. |
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Q64106663 | In vivo genome editing rescues photoreceptor degeneration via a Cas9/RecA-mediated homology-directed repair pathway |
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Q36469675 | Manipulation of the recipient retinal environment by ectopic expression of neurotrophic growth factors can improve transplanted photoreceptor integration and survival |
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