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Bibliographies
[1]
Overexpression of Systemic Defense Trigger 1 (MoSDT1) Confers Improved Rice Blast Resistance in Rice.
[2]
The Transcription factor PU.1 mediates enhancer-promoter looping that is required for IL-1b eRNA and mRNA transcription in mouse myeloma and macrophage cell lines.
[3]
Circadian rhythm-dependent and circadian rhythm-independent impacts of the molecular clock on type 3 innate lymphoid cells.
[4]
A circadian clock is essential for homeostasis of group 3 innate lymphoid cells in the gut.
[5]
Glucose-mediated repression of plant biomass utilization in the white-rot fungus .
[6]
Complex oxidation of apocytochromes during bacterial cytochrome maturation.
[7]
Phenylacetyl-CoA, not phenylacetic acid, attenuates CepIR-regulated virulence in .
[8]
Metagenomic signatures of gut infection caused by different pathotypes.
[9]
., a chemolithoheterotroph isolated from sulfide and organic rich coastal waters off Peru.
[10]
Epistatic Transcription Factor Networks Differentially Modulate Arabidopsis Growth and Defense.
[11]
The WRKY transcription factor GhWRKY27 coordinates the senescence regulatory pathway in upland cotton (Gossypium hirsutum L.).
[12]
Transcriptional regulation of neutrophil differentiation and function during inflammation.
[13]
Distinct epigenetic features of tumor-reactive CD8+ T cells in colorectal cancer patients revealed by genome-wide DNA methylation analysis.
[14]
Hypoxia is regulating enzymatic wood decomposition and intracellular carbohydrate metabolism in filamentous white rot fungus.
[15]
Neotropical termite microbiomes as sources of novel plant cell wall degrading enzymes.
[16]
tolerancia al aluminio en especies vegetales: mecanismos y genes
[17]
transcription factor profiling to predict recurrence-free survival in breast cancer: development and validation of a nomogram to optimize clinical management
[18]
thyroid progenitors are robustly derived from embryonic stem cells through transient, developmental stage-specific overexpression of nkx2-1
[19]
role and regulation of runx2 in osteogenesis
[20]
genome-wide identification of the mads-box transcription factor family in pear (pyrus bretschneideri) reveals evolution and functional divergence
[21]
the temporal expression patterns of the transcription factors and target genes in cardiomyocyte hypertrophy
[22]
models of aire-dependent gene regulation for thymic negative selection
[23]
construction and evaluation of yeast expression networks by database-guided predictions
[24]
meta-analysis of cancer transcriptomes: a new approach to uncover molecular pathological events in different cancer tissues
[25]
transcription factor 21 gene polymorphism in patients with coronary artery disease
[26]
mechanisms of specificity for hox factor activity
[27]
genomic selection for drought tolerance using genome-wide snps in maize
[28]
functional analysis of the fusarielin biosynthetic gene cluster
[29]
The Ste12-like transcription factor MaSte12 is involved in pathogenicity by regulating the appressorium formation in the entomopathogenic fungus, Metarhizium acridum.
[30]
genome-wide identification of micrornas and their targets in wild type and phyb mutant provides a key link between micrornas and the phyb-mediated light signaling pathway in rice
[31]
Expression of RUNX3 in skin cancers
[32]
A tuber mustard AP2/ERF transcription factor gene, , functioning in abscisic acid and abiotic stress responses, and evolutionary trajectory of the homologous genes in species.
[33]
Prediction of transcription factor binding sites using genetical genomics methods.
[34]
Transcription factors involved in basal immunity in mammals and plants interact with the same MAMP-responsive cis-sequence from Arabidopsis thaliana.
[35]
The MAMP-Responsive MYB Transcription Factors MYB30, MYB55 and MYB110 Activate the HCAA Synthesis Pathway and Enhance Immunity in Rice
[36]
Erratum to: Induced genome-wide binding of three Arabidopsis WRKY transcription factors during early MAMP-triggered immunity (Plant Cell 29, 2017, 20-38)
[37]
Induced genome-wide binding of three arabidopsis WRKY transcription factors during early MAMP-triggered immunity
[38]
Transcriptional regulation of Lonicera japonica Thunb. during flower development as revealed by comprehensive analysis of transcription factors.
[39]
A Network of Paralogous Stress Response Transcription Factors in the Human Pathogen Candida glabrata.
[40]
A systems approach to delineate functions of paralogous transcription factors: Role of the Yap family in the DNA damage response
[41]
Overexpression of PtrbHLH, a basic helix-loop-helix transcription factor from Poncirus trifoliata, confers enhanced cold tolerance in pummelo (Citrus grandis) by modulation of H2O2 level via regulating a CAT gene.
[42]
DNA specificities modulate the binding of human transcription factor A to mitochondrial DNA control region.
[43]
Hybrid Transcription Factor Engineering Activates the Silent Secondary Metabolite Gene Cluster for (+)-Asperlin in Aspergillus nidulans
[44]
In silico analysis of drought responsive transposons and transcription factors in Solanum tuberosum L.
[45]
Transcription factor 21 gene polymorphism in patients with coronary artery disease
[46]
In silico analysis of drought responsive transposons and transcription factors in Solanum tuberosum L.
[47]
In silico analysis of drought responsive transposons and transcription factors in Solanum tuberosum L.
[48]
Transcription factor 21 gene polymorphism in patients with coronary artery disease
[49]
Multiple roles and regulatory mechanisms of the transcription factor GATA6 in human cancers.
[50]
Engineering transcription factor BmoR for screening butanol overproducers.
[51]
The transcription factor SKN7 regulates conidiation, thermotolerance, apoptotic-like cell death and parasitism in the nematode endoparasitic fungus Hirsutella minnesotensis.
[52]
Exploring regulatory networks in plants: transcription factors of starch metabolism.
[53]
Elicitor-induced transcription factors for metabolic reprogramming of secondary metabolism in <it>Medicago truncatula</it>
[54]
A novel GCN5b lysine acetyltransferase complex associates with distinct transcription factors in the protozoan parasite Toxoplasma gondii.
[55]
Coregulation of Biosynthetic Genes and Transcription Factors for Aporphine-Type Alkaloid Production in Wounded Lotus Provides Insight into the Biosynthetic Pathway of Nuciferine.
[56]
Genes, pathways and transcription factors involved in seedling stage chilling stress tolerance in indica rice through RNA-Seq analysis.
[57]
Mutations in sigma 70 transcription factor improves expression of functional eukaryotic membrane proteins in Escherichia coli
[58]
Overexpression of the maize transcription factor ZmVQ52 accelerates leaf senescence in Arabidopsis.
[59]
MaPacC, a pH-responsive transcription factor, negatively regulates thermotolerance and contributes to conidiation and virulence in Metarhizium acridum.
[60]
Somatic mutation that affects transcription factor binding upstream of CD55 in the temporal cortex of a late-onset Alzheimer disease patient.
[61]
Transregulation of microRNA miR-21 promoter by AP-1 transcription factor in cervical cancer cells.
[62]
The roles of Dmrt (Double sex/Male-abnormal-3 Related Transcription factor) genes in sex determination and differentiation mechanisms: Ubiquity and diversity across the animal kingdom
[63]
Isolation and sequencing of doublesex/male abnormal 3 (DM) related transcription factor (Dmrt) genes from the Asian toad Bufo gargarizans (Cantor, 1842)
[64]
Co-delivery of free vancomycin and transcription factor decoy-nanostructured lipid carriers can enhance inhibition of methicillin resistant Staphylococcus aureus (MRSA).
[65]
The transcription factor SoxD controls neuronal guidance in the Drosophila visual system
[66]
Expression of foxp3 transcription factor in bronchial asthma
[67]
EXPRESSION OF FoxP3 TRANSCRIPTION FACTOR IN BRONCHIAL ASTHMA
[68]
Comprehensive human transcription factor binding site map for combinatory binding motifs discovery.
[69]
LC-MS<sup>n</sup> and HR-MS characterization of secondary metabolites from Hypericum japonicum Thunb. ex Murray from Nepalese Himalayan region and assessment of cytotoxic effect and inhibition of NF-κB and AP-1 transcription factors in vitro
[70]
The Transcription Factor Bhlhe40 Programs Mitochondrial Regulation of Resident CD8 T Cell Fitness and Functionality.
[71]
Similarities between the Epstein-Barr Virus (EBV) Nuclear Protein EBNA1 and the Pioneer Transcription Factor FoxA: Is EBNA1 a “Bookmarking” Oncoprotein that Alters the Host Cell Epigenotype?
[72]
Robust characterization of two distinct glutarate sensing transcription factors of </i>Pseudomonas putida<i> L-lysine metabolism.
[73]
Sexual dimorphic expression and release of transcription factors in bovine embryos exposed to oxidative stress.
[74]
Bioinformatics analysis and transcription regulation of TORC1 gene through transcription factors NRF1 and Smad3 in bovine preadipocytes.
[75]
Improved cold tolerance in switchgrass by a novel CCCH-type zinc finger transcription factor gene, , associated with ICE1-CBF-COR regulon and ABA-responsive genes.
[76]
YtrA, a GntR-Family Transcription Factor, Represses Two Genetic Loci Encoding Membrane Proteins in .
[77]
Transcription Factors Associated with Abiotic and Biotic Stress Tolerance and Their Potential for Crops Improvement.
[78]
HEAT SHOCK TRANSCRIPTION FACTOR A1b regulates heat tolerance in wheat and Arabidopsis through OPR3 and jasmonate signaling pathway.
[79]
Phytoplasma SAP11 effector destabilization of TCP transcription factors differentially impact development and defence of Arabidopsis versus maize.
[80]
The Transcription factor PU.1 mediates enhancer-promoter looping that is required for IL-1b eRNA and mRNA transcription in mouse myeloma and macrophage cell lines.
[81]
The Arabidopsis Cys2/His2 zinc finger transcription factor ZAT18 is a positive regulator of plant tolerance to drought stress.
[82]
Zinc finger protein transcription factors: Integrated line of action for plant antimicrobial activity.
[83]
SlMYB75, an MYB-type transcription factor, promotes anthocyanin accumulation and enhances volatile aroma production in tomato fruits
[84]
TCP transcription factor PpTCP20 is involved in peach bud endodormancy by inhibiting PpDAM5/PpDAM6 and interacting with PpABF2.
[85]
The ERF transcription factor MdERF38 promotes drought stress-induced anthocyanin biosynthesis in apple.
[86]
Epistatic Transcription Factor Networks Differentially Modulate Arabidopsis Growth and Defense.
[87]
Expression pattern of transcription factors and intracellular cytokines reveals that clinically cured tuberculosis is accompanied by an increase in Mycobacterium-specific Th1, Th2, and Th17 cells.
[88]
The WRKY transcription factor GhWRKY27 coordinates the senescence regulatory pathway in upland cotton (Gossypium hirsutum L.).
[89]
RSAT variation-tools: An accessible and flexible framework to predict the impact of regulatory variants on transcription factor binding.
[90]
Mechanistic insights into transcription factor cooperativity and its impact on protein-phenotype interactions.
[91]
MIR@NT@N: a framework integrating transcription factors, microRNAs and their targets to identify sub-network motifs in a meta-regulation network model.
[92]
MIR@NT@N: A framework integrating transcription factors, microRNAs and their targets to identify sub-network motifs in a meta-regulation network model
[93]
Genome-wide Scanning and Characterization of Sorghum bicolor L. Heat Shock Transcription Factors.
[94]
Transcription factors and plant response to drought stress: Current understanding and future directions
[95]
Role of the CCAAT/enhancer-binding protein NFATc2 transcription factor cascade in the induction of secretory phospholipase A2.
[96]
GLIS1, a novel hypoxia-inducible transcription factor, promotes breast cancer cell motility via activation of WNT5A.
[97]
Enhanced differentiation of human pluripotent stem cells into cardiomyocytes by bacteria-mediated transcription factors delivery.
[98]
Role of RUNX Family Transcription Factors in DNA Damage Response.
[99]
Homologous Transcription Factors DUX4 and DUX4c Associate with Cytoplasmic Proteins during Muscle Differentiation.
[100]
Genome-wide investigation of WRKY transcription factors in Tartary buckwheat () and their potential roles in regulating growth and development.
[101]
The transcription factor PrtT and its target protease profiles in Aspergillus niger are negatively regulated by carbon sources.