scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1016365705 |
P356 | DOI | 10.1038/SJ.ONC.1202824 |
P698 | PubMed publication ID | 10439047 |
P5875 | ResearchGate publication ID | 12860832 |
P2093 | author name string | H M Rabes | |
S Klugbauer | |||
P2860 | cites work | Cloning of an activated human ret gene with a novel 5' sequence fused by DNA rearrangement | Q42825807 |
Thyroid cancer after Chernobyl | Q43771247 | ||
The bromodomain revisited. | Q48050242 | ||
Thyroid cancer after Chernobyl | Q59051749 | ||
Molecular analysis of new subtypes of ELE/RET rearrangements, their reciprocal transcripts and breakpoints in papillary thyroid carcinomas of children after Chernobyl | Q74241933 | ||
Developmentally regulated expression of a human "finger"-containing gene encoded by the 5' half of the ret transforming gene | Q24298289 | ||
Cloning and characterization of a specific coactivator, ARA70, for the androgen receptor in human prostate cells | Q24314557 | ||
Differential interaction of nuclear receptors with the putative human transcriptional coactivator hTIF1 | Q24315063 | ||
GDNF-induced activation of the ret protein tyrosine kinase is mediated by GDNFR-alpha, a novel receptor for GDNF | Q24329169 | ||
Molecular characterization of a thyroid tumor-specific transforming sequence formed by the fusion of ret tyrosine kinase and the regulatory subunit RI alpha of cyclic AMP-dependent protein kinase A | Q24611227 | ||
Basic local alignment search tool | Q25938991 | ||
Progressive sequence alignment as a prerequisite to correct phylogenetic trees | Q29618216 | ||
Interaction of the putative androgen receptor-specific coactivator ARA70/ELE1alpha with multiple steroid receptors and identification of an internally deleted ELE1beta isoform | Q34068308 | ||
Development of a single-step duplex RT-PCR detecting different forms of ret activation, and identification of the third form of in vivo ret activation in human papillary thyroid carcinoma | Q34341017 | ||
PTC is a novel rearranged form of the ret proto-oncogene and is frequently detected in vivo in human thyroid papillary carcinomas | Q34372878 | ||
Signal transduction pathways activated by RET oncoproteins in PC12 pheochromocytoma cells | Q41056272 | ||
GDNF signalling through the Ret receptor tyrosine kinase | Q41190484 | ||
Functional receptor for GDNF encoded by the c-ret proto-oncogene | Q41190489 | ||
Pediatric thyroid cancer after the Chernobyl disaster. Pathomorphologic study of 84 cases (1991-1992) from the Republic of Belarus | Q42063852 | ||
Leucine zipper-mediated dimerization is essential for the PTC1 oncogenic activity | Q42801886 | ||
P433 | issue | 30 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 4388-93 | |
P577 | publication date | 1999-07-29 | |
P1433 | published in | Oncogene | Q1568657 |
P1476 | title | The transcription coactivator HTIF1 and a related protein are fused to the RET receptor tyrosine kinase in childhood papillary thyroid carcinomas | |
P478 | volume | 18 |
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Q22010974 | A RA-dependent, tumour-growth suppressive transcription complex is the target of the PML-RARalpha and T18 oncoproteins |
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Q33542991 | A novel translocation breakpoint within the BPTF gene is associated with a pre-malignant phenotype |
Q27852730 | BRAF fusions define a distinct molecular subset of melanomas with potential sensitivity to MEK inhibition |
Q38094645 | Bromodomains as therapeutic targets in cancer |
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Q40752741 | Correlation of the exon/intron organization to the conserved domains of the mouse transcriptional corepressor TIF1beta. |
Q37800593 | Cytogenetic and molecular events in adenoma and well-differentiated thyroid follicular-cell neoplasia |
Q35549967 | Delineating chromosomal breakpoints in radiation-induced papillary thyroid cancer |
Q31106255 | Differential expression of multiple isoforms of the ELKS mRNAs involved in a papillary thyroid carcinoma |
Q64075678 | Discovery Stories of RET Fusions in Lung Cancer: A Mini-Review |
Q40755317 | Establishment of a non-tumorigenic papillary thyroid cell line (FB-2) carrying the RET/PTC1 rearrangement |
Q43572298 | Expression of the RET proto-oncogene in papillary thyroid carcinoma and its correlation with clinical outcome |
Q77347322 | Frequent RET rearrangements in thyroid papillary microcarcinoma detected by interphase fluorescence in situ hybridization |
Q33952877 | Gene expression in papillary thyroid carcinoma reveals highly consistent profiles |
Q43599672 | Gene rearrangements in radiation-induced thyroid carcinogenesis |
Q35747698 | Genome-wide appraisal of thyroid cancer progression. |
Q48343925 | Identification of target genes within an amplicon at 14q12-q13 in esophageal squamous cell carcinoma |
Q40950385 | Imbalanced expression of Tif1γ inhibits pancreatic ductal epithelial cell growth |
Q33486497 | Inactivation of TIF1gamma cooperates with Kras to induce cystic tumors of the pancreas |
Q36387588 | It Takes 15 to Tango: Making Sense of the Many Ubiquitin Ligases of p53. |
Q37924088 | Molecular genetics and diagnosis of thyroid cancer |
Q37035285 | Molecular genetics of thyroid cancer: implications for diagnosis, treatment and prognosis |
Q35208510 | Molecular pathogenesis of thyroid cancer |
Q42798821 | New breakpoints in both the H4 and RET genes create a variant of PTC-1 in a post-Chernobyl papillary thyroid carcinoma |
Q55305474 | Overexpression of TRIM24 Stimulates Proliferation and Glucose Metabolism of Head and Neck Squamous Cell Carcinoma. |
Q34292571 | Overexpression of TRIM24 correlates with tumor progression in non-small cell lung cancer |
Q35084843 | Overexpression of TRIM24 is associated with the onset and progress of human hepatocellular carcinoma |
Q28204823 | PML protein isoforms and the RBCC/TRIM motif |
Q36623366 | Papillary thyroid carcinoma: 6 cases from 2 families with associated lymphocytic thyroiditis harbouring RET/PTC rearrangements |
Q26995208 | Partners in crime: The role of tandem modules in gene transcription |
Q38809952 | Potential role of TRIM3 as a novel tumour suppressor in colorectal cancer (CRC) development |
Q28216383 | Preferential expression of the transcription coactivator HTIF1alpha gene in acute myeloid leukemia and MDS-related AML |
Q35083169 | Prognostic significance of TRIM24/TIF-1α gene expression in breast cancer. |
Q74235643 | RET rearrangements in familial papillary thyroid carcinomas |
Q28138236 | RET/PCM-1: a novel fusion gene in papillary thyroid carcinoma |
Q28214459 | RET/PTC rearrangement in thyroid tumors |
Q28508519 | RFP represses transcriptional activation by bHLH transcription factors |
Q36831550 | Radiation-induced thyroid cancer: what we have learned from chernobyl |
Q34159334 | Response to Cabozantinib in patients with RET fusion-positive lung adenocarcinomas |
Q35657409 | Ret finger protein inhibits muscle differentiation by modulating serum response factor and enhancer of polycomb1. |
Q28590323 | TIF1delta, a novel HP1-interacting member of the transcriptional intermediary factor 1 (TIF1) family expressed by elongating spermatids |
Q24607229 | TRIM family proteins and their emerging roles in innate immunity |
Q53280723 | TRIM proteins and cancer. |
Q39077457 | TRIM proteins and diseases |
Q51003814 | TRIM24 is upregulated in human gastric cancer and promotes gastric cancer cell growth and chemoresistance. |
Q24317243 | TRIM24 links a non-canonical histone signature to breast cancer |
Q34744808 | TRIM24 overexpression is common in locally advanced head and neck squamous cell carcinoma and correlates with aggressive malignant phenotypes |
Q33598203 | TRIM24 promotes the aggression of gastric cancer via the Wnt/β-catenin signaling pathway |
Q36361387 | TRIM24 protein promotes and TRIM32 protein inhibits cardiomyocyte hypertrophy via regulation of dysbindin protein levels. |
Q34566316 | TRIM28 and β-actin identified via nanobody-based reverse proteomics approach as possible human glioblastoma biomarkers |
Q34103632 | The RET proto-oncogene in human cancers |
Q40810965 | The RFG oligomerization domain mediates kinase activation and re-localization of the RET/PTC3 oncoprotein to the plasma membrane |
Q28179242 | The Ret finger protein induces apoptosis via its RING finger-B box-coiled-coil motif |
Q60925241 | The Role of Tripartite Motif Family Proteins in TGF-β Signaling Pathway and Cancer |
Q90745502 | The Tripartite Nexus: Autophagy, Cancer, and Tripartite Motif-Containing Protein Family Members |
Q73175604 | The dual function steroid receptor coactivator/ubiquitin protein-ligase integrator E6-AP is overexpressed in mouse mammary tumorigenesis |
Q34267620 | The receptor tyrosine kinases: role in cancer progression. |
Q24293463 | The transcriptional regulation role of BRD7 by binding to acetylated histone through bromodomain |
Q73412063 | Thyroid cancer |
Q58796314 | Thyroid cancers of follicular origin in a genomic light: in-depth overview of common and unique molecular marker candidates |
Q46985009 | Thyroid carcinoma in children and adolescents |
Q41854184 | Transcriptional intermediary factor 1γ binds to the anaphase-promoting complex/cyclosome and promotes mitosis. |
Q24339423 | Trim24 targets endogenous p53 for degradation |
Q37289213 | Tripartite Motif-containing 33 (TRIM33) protein functions in the poly(ADP-ribose) polymerase (PARP)-dependent DNA damage response through interaction with Amplified in Liver Cancer 1 (ALC1) protein |
Q37515966 | Tyrosine kinase gene rearrangements in epithelial malignancies |
Q52887497 | [Mechanism of TRIM24 to Regulate Resistance of Gefitinib in NSCLC cells]. |
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Q73943560 | [Thyroid carcinomas of the follicular epithelium: tumor markers and oncogenes] |
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