DNA-binding specificity of the cut repeats from the human cut-like protein
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Summary
It is demonstrated that the native human Cut-like protein recognizes more efficiently a site containing an ATCGAT core consensus flanked with G/C-rich sequences, which is in contrast to other studies.
- Type
- article
- Published
- 1995-01-01
- Cited by
- 122
- References
- 56
- Access
- Open access
- OpenAlex
- https://openalex.org/W7799919
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25549274
Keywords
Mobilization, Politics, Political mobilization, Competition (biology), State (computer science)
References
- Insulin gene enhancer binding protein Isl-1 is a member of a novel class of proteins containing both a homeo-and a CysHis domain
- Novel cysteine-rich motif and homeodomain in the product of the Caenorhabditis elegans cell lineage gene lin-II
- The DNA binding specificity of the bipartite POU domain and its subdomains.
- A fungal mating type protein that regulates sexual and asexual development contains a POU‐related domain.
- lac repressor forms loops with linear DNA carrying two suitably spaced lac operators.
- Protein–DNA contacts in the structure of a homeodomain–DNA complex determined by nuclear magnetic resonance spectroscopy in solution.
- 3 Protein-Protein Interactions and DNA Loop Formation
- The −117 mutation in Greek HPFH affects the binding of three nuclear factors to the CCAAT region of the gamma‐globin gene.
- Conserved cut repeats in the human cut homeodomain protein function as DNA binding domains.
- CCAAT displacement protein as a repressor of the myelomonocytic-specific gp91-phox gene promoter.
- Segments of the POU domain influence one another's DNA-binding specificity
- The POU domain is a bipartite DNA-binding structure
- Transformation of sensory organs by mutations of the cut locus of D. melanogaster.
- A myosin-like dimerization helix and an extra-large homeodomain are essential elements of the tripartite DNA binding structure of LFB1.
- Regulatory interactions and role in cell type specification of the Malpighian tubules by the cut, Krüppel, and caudal genes of Drosophila.
- HNF-1 shares three sequence motifs with the POU domain proteins and is identical to LF-B1 and APF.
- The C. elegans cell lineage and differentiation gene unc-86 encodes a protein with a homeodomain and extended similarity to transcription factors.
- The protein CDP, but not CP1, footprints on the CCAAT region of the gamma-globin gene in unfractionated B-cell extracts.
- Mutually exclusive interaction of the CCAAT-binding factor and of a displacement protein with overlapping sequences of a histone gene promoter.
- Sequence-specific DNA binding by the c-Myc protein.
Cited by
- CCAAT displacement protein, a regulator of differentiation-specific gene expression, binds a negative regulatory element within the 5' end of the human papillomavirus type 6 long control region
- CCAAT Displacement Protein Binds to and Negatively Regulates Human Papillomavirus Type 6 E6, E7, and E1 Promoters
- Polycystic Kidneys Caused by Sustained Expression of Cux1 Isoform p75*
- Loss and gain of domains during evolution of cut superclass homeobox genes.
- THE ROLE OF THE MURINE HOMEOBOX GENE CUX-1 IN KIDNEY DEVELOPMENT AND POLYCYSTIC KIDNEY DISEASE
- Involvement of CDP/Cux in the Regulation of Histone H4 Gene Expression, Proliferation and Differentiation: a Dissertation
- Regulation of cell proliferation and differentiation in the kidney
- Syndromes associated with Homo sapiens pol II regulatory genes.
- Caractérisation et étude d'un élément régulateur du gène codant pour le récepteur à la vasopressine de type 2
- Potentially functional polymorphisms in aminoacyl‐tRNA synthetases genes are associated with breast cancer risk in a Chinese population
- The CCAAT displacement protein/cut homeodomain protein represses osteocalcin gene transcription and forms complexes with the retinoblastoma protein-related protein p107 and cyclin A.
- Regulation of YY1, a Multifunctional Transcription Factor
- The homeodomain transcription factor CDP/cut interacts with the cell cycle regulatory element of histone H4 genes packaged into nucleosomes
- CCAAT displacement protein (CDP/cut) recognizes a silencer element within the lactoferrin gene promoter.
- The Myc negative autoregulation mechanism requires Myc-Max association and involves the c-myc P2 minimal promoter
- Interaction of the CCAAT displacement protein with shared regulatory elements required for transcription of paired histone genes
- Characterization of a tissue-specific CDP/Cux isoform, p75, activated in breast tumor cells.
- CUTL1 Is Phosphorylated by Protein Kinase A, Modulating Its Effects on Cell Proliferation and Motility*
- Antagonistic Regulation of Apoptosis and Differentiation by the Cut Transcription Factor Represents a Tumor-Suppressing Mechanism in Drosophila
- A novel proteolytically processed CDP/Cux isoform of 90 kDa is generated by cathepsin L
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