scholarly article | Q13442814 |
P50 | author | Michael Boettcher | Q52431475 |
Gordon B. Mills | Q28086262 | ||
P2093 | author name string | J Wolf | |
F Zhang | |||
K Müller-Decker | |||
C Flechtenmacher | |||
J D Hoheisel | |||
M Shahmoradgoli | |||
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Gene expression profiling spares early breast cancer patients from adjuvant therapy: derived and validated in two population-based cohorts | Q25257621 | ||
Epithelial-mesenchymal transitions in development and disease | Q27860630 | ||
Gene expression patterns of breast carcinomas distinguish tumor subclasses with clinical implications | Q27860709 | ||
SALL1, the gene mutated in Townes-Brocks syndrome, encodes a transcriptional repressor which interacts with TRF1/PIN2 and localizes to pericentromeric heterochromatin | Q28212622 | ||
Regulation and function of Spalt proteins during animal development | Q28236610 | ||
Identification of selective inhibitors of cancer stem cells by high-throughput screening | Q28255115 | ||
Sall1 Regulates Embryonic Stem Cell Differentiation in Association with Nanog | Q28592145 | ||
Loss of E-cadherin promotes metastasis via multiple downstream transcriptional pathways | Q29615855 | ||
Stochastic state transitions give rise to phenotypic equilibrium in populations of cancer cells | Q29617991 | ||
Functional identification of tumor-suppressor genes through an in vivo RNA interference screen in a mouse lymphoma model | Q33693027 | ||
Identification of 5 novel genes methylated in breast and other epithelial cancers | Q33737079 | ||
PIK3CA mutations associated with gene signature of low mTORC1 signaling and better outcomes in estrogen receptor-positive breast cancer | Q33933172 | ||
Sall1-dependent signals affect Wnt signaling and ureter tip fate to initiate kidney development | Q34080638 | ||
SALL1 mutations in Townes-Brocks syndrome and related disorders | Q34096518 | ||
Tazarotene-induced gene 1 (TIG1) expression in prostate carcinomas and its relationship to tumorigenicity | Q34121773 | ||
An oncogenomics-based in vivo RNAi screen identifies tumor suppressors in liver cancer | Q34345765 | ||
Association between tumorigenic potential and the fate of cancer cells in a syngeneic melanoma model | Q34692759 | ||
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Dynamic actin remodeling during epithelial-mesenchymal transition depends on increased moesin expression. | Q35612241 | ||
Human breast cancer cell lines contain stem-like cells that self-renew, give rise to phenotypically diverse progeny and survive chemotherapy | Q36678657 | ||
Expression of connective tissue growth factor (CTGF/CCN2) in breast cancer cells is associated with increased migration and angiogenesis | Q37013806 | ||
EMT: when epithelial cells decide to become mesenchymal-like cells | Q37504554 | ||
Genomewide scan for loss of heterozygosity and chromosomal amplification in breast carcinoma using single-nucleotide polymorphism arrays | Q37678142 | ||
Depletion of RAD17 sensitizes pancreatic cancer cells to gemcitabine. | Q39149769 | ||
Expression of the class II tumor suppressor gene RIG1 is directly regulated by p53 tumor suppressor in cancer cell lines | Q39344280 | ||
Breast cancer stem cell markers CD44, CD24 and ALDH1: expression distribution within intrinsic molecular subtype | Q39523158 | ||
Bmi1 is essential in Twist1-induced epithelial–mesenchymal transition | Q39659307 | ||
Differential expression of moesin in breast cancers and its implication in epithelial-mesenchymal transition. | Q42503876 | ||
Cyr61 promotes breast tumorigenesis and cancer progression | Q44224235 | ||
Using array-comparative genomic hybridization to define molecular portraits of primary breast cancers. | Q48698068 | ||
P275 | copyright license | Creative Commons Attribution 3.0 Unported | Q14947546 |
P6216 | copyright status | copyrighted | Q50423863 |
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 33 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 4273-4278 | |
P577 | publication date | 2013-12-02 | |
P1433 | published in | Oncogene | Q1568657 |
P1476 | title | An in vivo RNAi screen identifies SALL1 as a tumor suppressor in human breast cancer with a role in CDH1 regulation | |
P478 | volume | 33 |
Q33623668 | An In Vivo Gain-of-Function Screen Identifies the Williams-Beuren Syndrome Gene GTF2IRD1 as a Mammary Tumor Promoter |
Q38647794 | An unbiased in vivo functional genomics screening approach in mice identifies novel tumor cell-based regulators of immune rejection |
Q38726549 | Association between genetic variants in the promoter region of a novel antisense long noncoding RNA RP11-392P7.6 and colorectal cancer risk |
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Q54247811 | Epigenetic modification of SALL1 as a novel biomarker for the prognosis of early stage head and neck cancer. |
Q47287055 | From biomarkers to therapeutic targets-the promises and perils of long non-coding RNAs in cancer |
Q58762999 | Identification of Hyper-Methylated Tumor Suppressor Genes-Based Diagnostic Panel for Esophageal Squamous Cell Carcinoma (ESCC) in a Chinese Han Population |
Q35439315 | In vivo shRNA screens in solid tumors. |
Q38537155 | Mutual interaction between BCL6 and miRNAs contributing to the pathogenesis of various cancers |
Q47731072 | Network-Based Coverage of Mutational Profiles Reveals Cancer Genes |
Q57283016 | Pharmacokinetic evaluation of the PNC disassembler metarrestin in wild-type and Pdx1-Cre;LSL-Kras;Tp53 (KPC) mice, a genetically engineered model of pancreatic cancer |
Q48001574 | RNAi screen identifies essential regulators of human brain metastasis-initiating cells. |
Q36173845 | RNAi screens identify CHD4 as an essential gene in breast cancer growth |
Q52329737 | SALL1 functions as a tumor suppressor in breast cancer by regulating cancer cell senescence and metastasis through the NuRD complex. |
Q36692354 | The nucleosome remodeling and deacetylase complex in development and disease |
Q91665814 | Uncovering the signaling landscape controlling breast cancer cell migration identifies novel metastasis driver genes |
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