Cyclosporine A inhibits the activity of a TATA box-binding protein that is required for transcription from the adenovirus major late promoter. 1993

P B Mahajan, and E A Thompson
Department of Human Biological Chemistry and Genetics, University of Texas Medical Branch, Galveston 77550.

Nuclear extracts from P1798 lymphoma cells support transcription from the adenovirus major late promotor (AdMLP) and the human histone H4 promoter. Nuclear extracts prepared from P1798 cells treated with 1 microgram/ml cyclosporine A for 24 h fail to support transcription from AdMLP, whereas transcription from the histone H4 promoter is unimpaired. Both control and cyclosporine-treated extracts contain proteins that interact with synthetic deoxyoligonucleotides that correspond to the CAAT box, TATA box, and upstream stimulatory element of AdMLP. Cyclosporine had no discernible qualitative or quantitative effect upon such DNA-protein interactions, as observed by gel mobility shift assays. Analysis of 5' deletion mutants of AdMLP indicates that deletion of sequences upstream of the TATA box reduces AdMLP transcription by only 50%. This observation suggests that cyclosporine A, which inhibits AdMLP transcription by > 90%, is unlikely to act through changes in the amount or activity of upstream activators such as upstream stimulatory factor- or CAAT box-binding proteins. On the other hand, deletion of TATA box sequences between -50 and -11 base pairs virtually eliminates transcription from AdMLP in vitro. A partially purified TFIID fraction was obtained from control P1798 nuclear extracts. The TFIID fraction reconstitutes transcription from AdMLP when added to extracts from cyclosporine A-treated cells. Recombinant TATA box-binding protein also reconstitutes transcription from AdMLP in cyclosporine A-treated extracts. These results are consistent with the hypothesis that cyclosporine A regulates the activity of a subset of general transcription factors which are required for initiation from some promoters (such as AdMLP) but not from others (such as histone H4).

UI MeSH Term Description Entries
D011401 Promoter Regions, Genetic DNA sequences which are recognized (directly or indirectly) and bound by a DNA-dependent RNA polymerase during the initiation of transcription. Highly conserved sequences within the promoter include the Pribnow box in bacteria and the TATA BOX in eukaryotes. rRNA Promoter,Early Promoters, Genetic,Late Promoters, Genetic,Middle Promoters, Genetic,Promoter Regions,Promoter, Genetic,Promotor Regions,Promotor, Genetic,Pseudopromoter, Genetic,Early Promoter, Genetic,Genetic Late Promoter,Genetic Middle Promoters,Genetic Promoter,Genetic Promoter Region,Genetic Promoter Regions,Genetic Promoters,Genetic Promotor,Genetic Promotors,Genetic Pseudopromoter,Genetic Pseudopromoters,Late Promoter, Genetic,Middle Promoter, Genetic,Promoter Region,Promoter Region, Genetic,Promoter, Genetic Early,Promoter, rRNA,Promoters, Genetic,Promoters, Genetic Middle,Promoters, rRNA,Promotor Region,Promotors, Genetic,Pseudopromoters, Genetic,Region, Genetic Promoter,Region, Promoter,Region, Promotor,Regions, Genetic Promoter,Regions, Promoter,Regions, Promotor,rRNA Promoters
D004268 DNA-Binding Proteins Proteins which bind to DNA. The family includes proteins which bind to both double- and single-stranded DNA and also includes specific DNA binding proteins in serum which can be used as markers for malignant diseases. DNA Helix Destabilizing Proteins,DNA-Binding Protein,Single-Stranded DNA Binding Proteins,DNA Binding Protein,DNA Single-Stranded Binding Protein,SS DNA BP,Single-Stranded DNA-Binding Protein,Binding Protein, DNA,DNA Binding Proteins,DNA Single Stranded Binding Protein,DNA-Binding Protein, Single-Stranded,Protein, DNA-Binding,Single Stranded DNA Binding Protein,Single Stranded DNA Binding Proteins
D006367 HeLa Cells The first continuously cultured human malignant CELL LINE, derived from the cervical carcinoma of Henrietta Lacks. These cells are used for, among other things, VIRUS CULTIVATION and PRECLINICAL DRUG EVALUATION assays. Cell, HeLa,Cells, HeLa,HeLa Cell
D006657 Histones Small chromosomal proteins (approx 12-20 kD) possessing an open, unfolded structure and attached to the DNA in cell nuclei by ionic linkages. Classification into the various types (designated histone I, histone II, etc.) is based on the relative amounts of arginine and lysine in each. Histone,Histone H1,Histone H1(s),Histone H2a,Histone H2b,Histone H3,Histone H3.3,Histone H4,Histone H5,Histone H7
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000256 Adenoviridae A family of non-enveloped viruses infecting mammals (MASTADENOVIRUS) and birds (AVIADENOVIRUS) or both (ATADENOVIRUS). Infections may be asymptomatic or result in a variety of diseases. Adenoviruses,Ichtadenovirus,Adenovirus,Ichtadenoviruses
D014157 Transcription Factors Endogenous substances, usually proteins, which are effective in the initiation, stimulation, or termination of the genetic transcription process. Transcription Factor,Factor, Transcription,Factors, Transcription
D014158 Transcription, Genetic The biosynthesis of RNA carried out on a template of DNA. The biosynthesis of DNA from an RNA template is called REVERSE TRANSCRIPTION. Genetic Transcription
D014407 Tumor Cells, Cultured Cells grown in vitro from neoplastic tissue. If they can be established as a TUMOR CELL LINE, they can be propagated in cell culture indefinitely. Cultured Tumor Cells,Neoplastic Cells, Cultured,Cultured Neoplastic Cells,Cell, Cultured Neoplastic,Cell, Cultured Tumor,Cells, Cultured Neoplastic,Cells, Cultured Tumor,Cultured Neoplastic Cell,Cultured Tumor Cell,Neoplastic Cell, Cultured,Tumor Cell, Cultured
D016385 TATA Box A conserved A-T rich sequence which is contained in promoters for RNA polymerase II. The segment is seven base pairs long and the nucleotides most commonly found are TATAAAA. Hogness Box,Box, Hogness,Box, TATA

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