Search Results - "BRESNICK, Edward"
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Identification of Positive and Negative Regulatory Elements of the Human Cytochrome P4501A2 (CYP1A2) Gene
Published in Archives of biochemistry and biophysics (15-02-1997)“…We previously demonstrated an enhancer-like positive regulatory element within a 259-bp sequence (−2352 to −2094 bp) of the humanCYP1A2gene in HepG2 cells…”
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2
Glycine N-Methyltransferase Is an Example of Functional Diversity
Published in The Journal of biological chemistry (22-08-1997)“…The cytochrome P-4501A1 (CYP1A1) gene is regulated by several trans-acting factors including the 4 S polycyclic aromatic hydrocarbon (PAH)-binding protein,…”
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3
ATP Depletion Affects the Phosphorylation State, Ligand Binding, and Nuclear Transport of the 4 S Polycyclic Aromatic Hydrocarbon-binding Protein in Rat Hepatoma Cells
Published in The Journal of biological chemistry (20-12-1996)“…In the rat, cytochrome P4501A1 gene expression is thought to be regulated by several trans-acting factors including the 4 S polycyclic aromatic hydrocarbon…”
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4
Distinct roles for p53 transactivation and repression in preventing UCN-01-mediated abrogation of DNA damage-induced arrest at S and G2 cell cycle checkpoints
Published in Oncogene (26-05-2005)“…The topoisomerase I inhibitor SN38 arrests cell cycle progression primarily in S or G(2) phases of the cell cycle in a p53-independent manner. The Chk1…”
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5
Retirement or relearning the joys of the discovery process
Published in Journal of cellular biochemistry (01-02-2004)Get full text
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LETTER FROM THE EDITOR
Published in Toxicology and applied pharmacology (01-01-2000)Get full text
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7
LETTER FROM THE EDITOR
Published in Toxicology and applied pharmacology (01-01-2000)Get full text
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8
Positive and negative regulation of ΔN-p63 promoter activity by p53 and ΔN-p63-α contributes to differential regulation of p53 target genes
Published in Oncogene (23-10-2003)“…Mammary epithelial regeneration implies the existence of cellular progenitors with retained replicative capacity, prolonged lifespan and developmental potency…”
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9
Glycine N-methyltransferase is an example of functional diversity. Role as a polycyclic aromatic hydrocarbon-binding receptor
Published in The Journal of biological chemistry (22-08-1997)“…The cytochrome P-4501A1 (CYP1A1) gene is regulated by several trans-acting factors including the 4 S polycyclic aromatic hydrocarbon (PAH)-binding protein,…”
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10
Phospholipase activity in skin after application of phorbol esters and 3-methylcholanthrene
Published in Carcinogenesis (New York) (1981)“…Topical administration of the promoter, 12-O-tetradecanoylphorbol-13-acetate (TPA), is accompanied by an increased incorporation of [3H]arachidonic acid into…”
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11
Inhibitory effect of apigenin, a plant flavonoid, on epidermal ornithine decarboxylase and skin tumor promotion in mice
Published in Cancer research (Chicago, Ill.) (01-02-1990)“…This investigation studied the effect of topical application of apigenin on skin tumorigenesis initiated by 7,12-dimethylbenz(a)anthracene (DMBA) and promoted…”
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12
Positive and negative regulation of [Delta]N-p63 promoter activity by p53 and [Delta]N-p63-[alpha] contributes to differential regulation of p53 target genes
Published in Oncogene (23-10-2003)“…Mammary epithelial regeneration implies the existence of cellular progenitors with retained replicative capacity, prolonged lifespan and developmental potency…”
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13
Positive and negative regulation of deltaN-p63 promoter activity by p53 and deltaN-p63-alpha contributes to differential regulation of p53 target genes
Published in Oncogene (23-10-2003)“…Mammary epithelial regeneration implies the existence of cellular progenitors with retained replicative capacity, prolonged lifespan and developmental potency…”
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14
Oct-1 transcription factor is a negative regulator of rat CYP1A1 expression via an octamer sequence in its negative regulatory element
Published in Molecular pharmacology (01-02-1996)“…The rat CYP1A1 negative regulatory element (NRE) contains AP-1 and Oct-1 motifs at -808 to -788 bp. The CYP1A1 sequence from -813 to -779 bp and an identical…”
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15
The Homodimeric Form of Glycine N-Methyltransferase Acts as a Polycyclic Aromatic Hydrocarbon-Binding Receptor
Published in Biochemistry (Easton) (12-08-1997)“…In the rat, cytochrome P4501A1 gene expression is thought to be regulated by several trans-acting factors including the 4S polycyclic aromatic hydrocarbon…”
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16
Regulation of the constitutive expression of the human CYP1A2 gene: cis elements and their interactions with proteins
Published in Molecular pharmacology (01-04-1995)“…Cytochrome P4501A2 (CYP1A2) is a member of the cytochrome P450 family that is involved in phase I drug metabolism in vertebrates. To understand how the…”
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Retrovirus-mediated transfer of the human O 6-Methylguanine-DNA methyltransferase gene into a murine hematopoietic stem cell line and resistance to the toxic effects of certain alkylating agents
Published in Biochemical pharmacology (03-05-1996)“…O 6-Methylguanine-DNA methyltransferase (MGMT) is an important DNA repair protein that plays a key role in cancer chemotherapy by alkylating agents such as…”
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3-Methylcholanthrene-mediated induction of cytochrome P4501A2 in human hepatoma HepG2 cells as quantified by the reverse transcription-polymerase chain reaction
Published in Archives of biochemistry and biophysics (01-10-1994)“…The feasibility of using HepG2 human hepatoma cells to study the regulation of the expression of the cytochrome P4501A2 gene (CYP1A2) was examined. The reverse…”
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19
Glycine N-Methyltransferase Is a Mediator of Cytochrome P4501A1 Gene Expression
Published in Archives of biochemistry and biophysics (01-10-1995)“…Cytochrome P4501A1, the isozyme most closely approximating aryl hydrocarbon hydroxylase activity under conditions of induction, is thought to be regulated by…”
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Nuclear transcription factor Oct-1 binds to the 5′-upstream region of CYP1 A1 and negatively regulates its expression
Published in The international journal of biochemistry & cell biology (1996)“…The cytochrome P450-dependent monooxygenases, which represent an extended superfamily, catalyze the biotransformation of many endogenous and exogenous…”
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