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A Admon

Publications and source records attributed to A Admon.

42 records · Page 3Linked to original sources

Functional analysis of NTF-1, a developmentally regulated Drosophila transcription factor that binds neuronal cis elements.

In an effort to characterize sequence-specific transcription factors that regulate gene expression during Drosophila development, we identified and purified a novel DNA-binding activity (NTF-1). The purified protein consists of several polypeptides that bind selectively to a functionally important cis-control element of the Ultrabithorax (Ubx) promoter and to the neurogenic elements of both the dopa decarboxylase (Ddc) and fushi tarazu (ftz) promoter/enhancer regions. Purified NTF-1 activates transcription in vitro in a binding site-dependent manner through upstream sequences of the Ubx promoter. A cDNA clone encoding the open reading frame of NTF-1 was isolated, and the deduced primary amino acid sequence of NTF-1 includes a glutamine-rich region reminiscent of the transcriptional activation domains found in Sp1 but no recognizable DNA-binding domain. NTF-1 expression is temporally regulated during embryonic development. In addition, in situ hybridization experiments revealed that NTF-1 is transcribed in a spatially restricted pattern in the embryo, with the highest level of expression observed in the epidermis and a subset of cells in the CNS. Expression of the NTF-1 cDNA in mammalian cells yields a protein that displays DNA-binding and transcriptional activities indistinguishable from that of the collection of proteins isolated from Drosophila embryos. These findings suggest that NTF-1 is a member of a family of developmentally regulated transcription factors that may be involved in directing the expression of genes such as Ubx, Ddc, and ftz in neuronal cells.

Amino Acid Sequence↗

Cloning and expression of AP-2, a cell-type-specific transcription factor that activates inducible enhancer elements.

Human AP-2 is a sequence-specific DNA-binding protein that interacts with inducible viral and cellular enhancer elements to stimulate transcription of selected genes. Here, we report the isolation and characterization of a human cDNA clone containing the entire protein-coding region of AP-2. The deduced primary amino acid sequence of AP-2 does not contain a domain resembling any previously identified DNA binding motif. However, an interesting feature of the AP-2 protein is a clustered arrangement of proline and glutamine residues that have been found recently within the activation domains of other transcription factors. Expression of the AP-2 clone in bacteria yields a protein that binds to DNA and activates transcription in vitro in a comparable manner to native human AP-2. Transfection of cDNA clones into Drosophila cells indicates that the AP-2 gene product can also activate gene expression in vivo in a DNA template-dependent manner. Expression of endogenous AP-2 is repressed in a hepatoma cell line and stimulated following retinoic-acid-induced differentiation of a human teratocarcinoma cell line. This indicates that AP-2 may be a transcription factor involved in the control of developmentally regulated gene expression.

Amino Acid Sequence↗

Human proto-oncogene c-jun encodes a DNA binding protein with structural and functional properties of transcription factor AP-1.

Nuclear oncogene products have the potential to induce alterations in gene regulation leading to the genesis of cancer. The biochemical mechanisms by which nuclear oncoproteins act remain unknown. Recently, an oncogene, v-jun, was found to share homology with the DNA binding domain of a yeast transcription factor, GCN4. Furthermore, GCN4 and the phorbol ester-inducible enhancer binding protein, AP-1, recognize very similar DNA sequences. The human proto-oncogene c-jun has now been isolated, and the deduced amino acid sequence indicates more than 80 percent identity with v-jun. Expression of cloned c-jun in bacteria produced a protein with sequence-specific DNA binding properties identical to AP-1. Antibodies raised against two distinct peptides derived from v-jun reacted specifically with human AP-1. In addition, partial amino acid sequence of purified AP-1 revealed tryptic peptides in common with the c-jun protein. The structural and functional similarities between the c-jun product and the enhancer binding protein suggest that AP-1 may be encoded by c-jun. These findings demonstrate that the proto-oncogene product of c-jun interacts directly with specific target DNA sequences to regulate gene expression, and therefore it may now be possible to identify genes under the control of c-jun that affect cell growth and neoplasia.

Amino Acid Sequence↗

Amino acid sequence of the nucleotide binding region of chloroplast coupling factor 1.

The labeling of chloroplast coupling factor 1 by 3'-O-(4-benzoyl)benzoyl-ATP (BzATP) was studied. When the enzyme was incubated with approximately 10 microM BzATP and 6 mM MgCl2 at pH 7.9 for approximately 20 min and passed through two Sephadex G-50 centrifuge columns, three BzATP molecules were bound per coupling factor molecule. Photolysis of radioactive enzyme-bound BzATP followed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and autoradiography revealed that the BzATP bound primarily to the beta-polypeptide. If unbound BzATP was not removed by centrifuge columns prior to photolysis, significant labeling of the alpha-polypeptide also occurred. After photolysis, the BzATP-labeled enzyme was treated with trypsin, and two radioactive peptides were isolated by high-performance liquid chromatography on a C18 column. The two peptides were sequenced and found to correspond to amino acids 360-378 and 393-397 of the beta-polypeptide. For the sequence 360-378, two specific amino acids were found to be radioactive (Tyr-362 and Asp-369). This region of the polypeptide is highly conserved in several different species and probably corresponds to part of the nucleotide binding region of the catalytic site. In the case of amino acids 393-397, a very low level of radioactivity was found for all amino acids. The significance of this peptide for the binding of nucleotides to coupling factor 1 could not be established.

Adenosine Triphosphate↗

Assessment of cytoplasmic contaminations in isolated vacuole preparations.

A method for testing the purity of isolated vacuoles is proposed. Preparations of isolated vacuoles often contain "impure vacuoles," namely, vacuoles contaminated with some cytoplasmic remnants. Such impure vacuoles are stained by the vital fluorescent dye fluorescein-diacetate. Vacuoles enclosed only by the tonoplast, "naked vacuoles," do not stain.

Journal Article↗